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@ARTICLE{abe84a,
   author = {{Abe}, H. and {Okada}, H. and {Itatani}, R. and {Ono}, M. and 
	{Okuda}, H.},
    title = "{Resonant Heating Due to Cyclotron Subharmonic Frequency Waves}",
  journal = {Phys. Rev. Lett.},
 keywords = {Plasma heating by particle beams, Electrostatic waves and oscillations},
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      doi = {10.1103/PhysRevLett.53.1153},
   adsurl = {http://adsabs.harvard.edu/abs/1984PhRvL..53.1153A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto85a,
   author = {{Akimoto}, K. and {Papadopoulos}, K. and {Winske}, D.},
    title = "{Ion-acoustic instabilities driven by an ion velocity ring}",
  journal = {J. Plasma Phys.},
 keywords = {ELECTROSTATIC WAVES, ION ACOUSTIC WAVES, ION DISTRIBUTION, MAGNETOHYDRODYNAMIC STABILITY, ANISOTROPY, ISOTROPY, WAVE DISPERSION, WAVE PROPAGATION},
     year = 1985,
    month = dec,
   volume = 34,
    pages = {467-479},
   adsurl = {http://adsabs.harvard.edu/abs/1985JPlPh..34..467A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto85b,
   author = {{Akimoto}, K. and {Winske}, D.},
    title = "{Ion-acoustic-like waves excited by the reflected ions at the earth's bow shock}",
  journal = {J. Geophys. Res.},
 keywords = {BOW WAVES, EARTH ATMOSPHERE, ELECTROSTATIC WAVES, ION ACOUSTIC WAVES, PLASMA FREQUENCIES, SHOCK WAVES, ANISOTROPY, ELECTRON DISTRIBUTION, ION DISTRIBUTION, MAGNETOHYDRODYNAMIC STABILITY, SOLAR WIND},
     year = 1985,
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   volume = 90,
    pages = {12095-+},
      doi = {10.1029/JA090iA12p12095},
   adsurl = {http://adsabs.harvard.edu/abs/1985JGR....9012095A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto87a,
   author = {{Akimoto}, K. and {Gary}, S.~P. and {Omidi}, N.},
    title = "{Electron/ion whistler instabilities and magnetic noise bursts}",
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 keywords = {ELECTROMAGNETIC NOISE, ELECTRON PLASMA, GEOMAGNETISM, MAGNETOHYDRODYNAMIC STABILITY, PLASMA COMPOSITION, WHISTLERS, ELECTROMAGNETIC PROPERTIES, FIELD ALIGNED CURRENTS, ION BEAMS, VLASOV EQUATIONS},
     year = 1987,
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      doi = {10.1029/JA092iA10p11209},
   adsurl = {http://adsabs.harvard.edu/abs/1987JGR....9211209A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto89a,
   author = {{Akimoto}, K. and {Winske}, D.},
    title = "{Nonlinear generation of whistler waves by an ion beam}",
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 keywords = {FIELD ALIGNED CURRENTS, ION BEAMS, WHISTLERS, COMETARY ATMOSPHERES, EARTH MAGNETOSPHERE, ION TEMPERATURE, MAGNETOHYDRODYNAMIC WAVES},
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      doi = {10.1029/JA094iA12p17259},
   adsurl = {http://adsabs.harvard.edu/abs/1989JGR....9417259A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto91a,
   author = {{Akimoto}, K. and {Winske}, D. and {Onsager}, T.~G. and {Thomsen}, M.~F. and 
	{Gary}, S.~P.},
    title = "{Steepening of parallel propagating hydromagnetic waves into magnetic pulsations - A simulation study}",
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 keywords = {EARTH MAGNETOSPHERE, GEOMAGNETIC PULSATIONS, MAGNETOHYDRODYNAMIC WAVES, BOW WAVES, SATELLITE OBSERVATION, SHOCK WAVES, SIMULATION, WAVE AMPLIFICATION},
     year = 1991,
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    pages = {17599-+},
      doi = {10.1029/91JA01603},
   adsurl = {http://adsabs.harvard.edu/abs/1991JGR....9617599A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{akimoto93a,
   author = {{Akimoto}, K. and {Winske}, D. and {Gary}, S.~P. and {Thomsen}, M.~F.
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 keywords = {DYNAMIC STABILITY, FIELD ALIGNED CURRENTS, ION BEAMS, NONLINEAR EVOLUTION EQUATIONS, EARTH MAGNETOSPHERE, ION DENSITY (CONCENTRATION)},
     year = 1993,
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      doi = {10.1029/92JA02345},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{albert05a,
   author = {{Albert}, J.~M. and {Young}, S.~L.},
    title = "{Multidimensional quasi-linear diffusion of radiation belt electrons}",
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 keywords = {Magnetospheric Physics: Radiation belts, Magnetospheric Physics: Energetic particles: precipitating, Magnetospheric Physics: Energetic particles: trapped, Magnetospheric Physics: Magnetosphere: inner, Space Plasma Physics: Wave/particle interactions (2483, 6984)},
     year = 2005,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{amano07a,
   author = {{Amano}, T. and {Hoshino}, M.},
    title = "{Electron Injection at High Mach Number Quasi-perpendicular Shocks: Surfing and Drift Acceleration}",
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}

@ARTICLE{amano09a,
   author = {{Amano}, T. and {Hoshino}, M.},
    title = "{Electron Shock Surfing Acceleration in Multidimensions: Two-Dimensional Particle-in-Cell Simulation of Collisionless Perpendicular Shock}",
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archivePrefix = "arXiv",
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}

@ARTICLE{amano09b,
   author = {{Amano}, T. and {Hoshino}, M.},
    title = "{Nonlinear evolution of Buneman instability and its implication for electron acceleration in high Mach number collisionless perpendicular shocks}",
  journal = {Phys. Plasmas},
 keywords = {Mach number, magnetosphere, plasma instability, plasma nonlinear waves, plasma shock waves, plasma simulation, stochastic processes, supernova remnants, Macroinstabilities, Shock waves and discontinuities, Particle-in-cell method, MHD waves, plasma waves, and instabilities, Nonlinear phenomena: waves, wave propagation, and other interactions},
     year = 2009,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{amano10a,
   author = {{Amano}, T. and {Hoshino}, M.},
    title = "{A Critical Mach Number for Electron Injection in Collisionless Shocks}",
  journal = {Phys. Rev. Lett.},
archivePrefix = "arXiv",
   eprint = {1004.3838},
 keywords = {Cosmic rays, Magnetohydrodynamics and plasmas, Planetary bow shocks; interplanetary shocks, Particle acceleration},
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}

@ARTICLE{amato06a,
   author = {{Amato}, E. and {Arons}, J.},
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   eprint = {arXiv:astro-ph/0609034},
 keywords = {Acceleration of Particles, ISM: Jets and Outflows, Shock Waves},
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}

@ARTICLE{anderson82,
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	{Hoppe}, M.~M. and {Tsurutani}, B.~T. and {Etcheto}, J.},
    title = "{Plasma waves near the magnetopause}",
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 keywords = {BOUNDARY LAYER PLASMAS, MAGNETOPAUSE, PLASMA DIAGNOSTICS, PLASMA WAVES, SATELLITE SOUNDING, SPACE PLASMAS, ELECTRIC FIELDS, FLUX QUANTIZATION, INTERNATIONAL SUN EARTH EXPLORERS, MAGNETOSHEATH, POWER SPECTRA, PROPAGATION MODES},
     year = 1982,
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}

@ARTICLE{angelopoulos08a,
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      doi = {10.1007/s11214-008-9336-1},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{aptekar95,
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	{Sokolova}, Z.~J. and {Terekhov}, M.~M. and {Sheshin}, L.~O. and 
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      doi = {10.1007/BF00751332},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{anderson83a,
   author = {{Anderson}, R.~R.},
    title = "{Plasma waves in planetary magnetospheres}",
  journal = {Rev. Geophys. Space Phys.},
 keywords = {ATMOSPHERIC PHYSICS, EARTH MAGNETOSPHERE, JUPITER ATMOSPHERE, PLASMA WAVES, SATURN ATMOSPHERE, AURORAL IRRADIATION, CONTINUOUS RADIATION, ELECTRON CYCLOTRON HEATING, ION CYCLOTRON RADIATION, MAGNETOPAUSE, MAGNETOSHEATH, NONTHERMAL RADIATION, PLANETARY MAGNETIC FIELDS, RADIO ASTRONOMY, VOYAGER PROJECT},
     year = 1983,
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   adsurl = {http://adsabs.harvard.edu/abs/1983RvGSP..21..474A},
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}

@ARTICLE{andre01a,
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	{Mozer}, F. and {Pedersen}, A. and {Fazakerley}, A.},
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}

@ARTICLE{archer05,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{arima80a,
   author = {{Arima}, S. and {Sugawa}, M. and {Sugaya}, R.},
    title = "{Nonlinear amplitude oscillations of obliquely propagating Bernstein waves in a plasma}",
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 keywords = {ELECTRON PLASMA, ELECTROSTATIC WAVES, PLASMA OSCILLATIONS, PLASMA-ELECTROMAGNETIC INTERACTION, ELECTRON CYCLOTRON HEATING, NONLINEAR SYSTEMS, TRAPPED PARTICLES, WAVE PROPAGATION},
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}

@ARTICLE{armstrong81a,
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	{Stenzel}, R.~L.},
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  journal = {Phys. Lett. A},
 keywords = {BERNSTEIN ENERGY PRINCIPLE, ELECTRON PLASMA, PLASMA WAVES, SPACE PLASMAS, WAVE PROPAGATION, ELECTRON CYCLOTRON HEATING, PLANE WAVES, PLASMA-ELECTROMAGNETIC INTERACTION},
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   adsurl = {http://adsabs.harvard.edu/abs/1981PhLA...85..281A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@BOOK{aschwanden05a,
   author = {{Aschwanden}, M.~J.},
    title = "{Physics of the Solar Corona. An Introduction with Problems and Solutions (2nd edition)}",
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booktitle = {Pour la Science},
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publisher = "Springer",
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}

@ARTICLE{ashourabdalla78a,
   author = {{Ashour-Abdalla}, M. and {Kennel}, C.~F.},
    title = "{Nonconvective and convective electron cyclotron harmonic instabilities}",
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 keywords = {CONVECTION, CYCLOTRON RADIATION, EARTH MAGNETOSPHERE, ELECTRON PLASMA, ELECTROSTATIC WAVES, HARMONIC RADIATION, MAGNETOHYDRODYNAMIC STABILITY, DISTRIBUTION FUNCTIONS, ELECTRON ENERGY, ELECTRON PRECIPITATION, MAGNETOSPHERIC ELECTRON DENSITY, PARTICLE DIFFUSION},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ashourabdalla78b,
   author = {{Ashour-Abdalla}, M. and {Kennel}, C.~F.},
    title = "{Multi-harmonic electron cyclotron instabilities}",
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 keywords = {AURORAS, CYCLOTRON RADIATION, DIFFUSE RADIATION, ELECTRON RADIATION, HARMONIC RADIATION, MAGNETOHYDRODYNAMIC STABILITY, BACKGROUND RADIATION, COLD PLASMAS, EARTH MAGNETOSPHERE, ELECTRON SCATTERING, ELECTROSTATIC WAVES, HIGH TEMPERATURE PLASMAS, PLASMA COMPOSITION, PLASMA RADIATION},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ashourabdalla79a,
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 keywords = {COLD PLASMAS, ELECTRON DISTRIBUTION, ELECTRON ENERGY, HARMONIC ANALYSIS, MAGNETOSPHERIC INSTABILITY, CYCLOTRON FREQUENCY, DISTRIBUTION FUNCTIONS, ENERGY DISSIPATION, GROUP VELOCITY, HOT ELECTRONS, IONOSPHERIC ELECTRON DENSITY, PLASMA DENSITY, PLASMA LOSS, SPATIAL DISTRIBUTION},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ashourabdalla80a,
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 keywords = {ELECTRON CYCLOTRON HEATING, IONOSPHERIC DISTURBANCES, MAGNETOSPHERIC INSTABILITY, PLASMA WAVES, ATMOSPHERIC MODELS, COMPUTERIZED SIMULATION, CYCLOTRON RESONANCE, ELECTRON ENERGY, HOT ELECTRONS, MAGNETOHYDRODYNAMIC STABILITY},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ashourabdalla86a,
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 keywords = {ELECTROMAGNETIC NOISE, ELECTROSTATICS, GEOMAGNETIC TAIL, SPACE PLASMAS, BROADBAND, ION CYCLOTRON RADIATION, PLASMA LAYERS, TIME RESPONSE, VELOCITY DISTRIBUTION},
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}

@ARTICLE{ashourabdalla06a,
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      doi = {10.1029/2005JA011490},
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}

@ARTICLE{asnes05a,
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	{Thomsen}, M. and {{\O}stgaard}, N. and {Cayton}, T.},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{asnes05b,
   author = {{{\AA}snes}, A. and {Stadsnes}, J. and {Friedel}, R.~W. and 
	{{\O}stgaard}, N. and {Thomsen}, M.},
    title = "{Medium energy pitch angle distribution during substorm injected electron clouds}",
  journal = {Geophys. Res. Lett.},
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}

@ARTICLE{auster08a,
   author = {{Auster}, H.~U. and {Glassmeier}, K.~H. and {Magnes}, W. and 
	{Aydogar}, O. and {Baumjohann}, W. and {Constantinescu}, D. and 
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	{Richter}, I. and {Schwarzl}, H. and {Stoll}, B. and {Valavanoglou}, A. and 
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    title = "{The THEMIS Fluxgate Magnetometer}",
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      doi = {10.1007/s11214-008-9365-9},
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}
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@ARTICLE{backrud05a,
   author = {{Backrud}, M. and {Tjulin}, A. and {Vaivads}, A. and {Andr{\'e}}, M. and 
	{Fazakerley}, A.},
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}

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}

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}

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}

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}

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}

@ARTICLE{bale02b,
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}

@ARTICLE{bale03,
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}

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}

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}

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}

@BOOK{baumjohann96a,
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}

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}

@ARTICLE{bavassano86a,
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}

@ARTICLE{bavassano87a,
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}

@ARTICLE{begenal87a,
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}

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}

@ARTICLE{behlke04,
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@ARTICLE{beinroth81a,
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@ARTICLE{bell64a,
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@ARTICLE{bell65a,
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@ARTICLE{bell81a,
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@ARTICLE{bell83a,
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@ARTICLE{bell84a,
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@ARTICLE{bell86a,
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}

@ARTICLE{bell88a,
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}

@ARTICLE{bell90a,
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}

@ARTICLE{bell09a,
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@ARTICLE{bernstein57,
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@ARTICLE{berthomier08a,
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@INPROCEEDINGS{bertucci05a,
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@INPROCEEDINGS{bingham05a,
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@ARTICLE{breneman10c,
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@INBOOK{burton02,
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%-----------------------------------------------------------------------------------------
% CCCCCCCCCCCCCC
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% DDDDDDDDDDDDDD
%-----------------------------------------------------------------------------------------
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}

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%-----------------------------------------------------------------------------------------
% EEEEEEEEEEEEEE
%-----------------------------------------------------------------------------------------
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}
%-----------------------------------------------------------------------------------------
% FFFFFFFFFFFFFF
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@ARTICLE{fairfield69,
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}

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}

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@ARTICLE{forslund70c,
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@ARTICLE{forslund71b,
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}

@ARTICLE{franz00a,
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}

@ARTICLE{franz02a,
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}

@ARTICLE{franz05a,
   author = {{Franz}, J.~R. and {Kintner}, P.~M. and {Pickett}, J.~S. and 
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}

@ARTICLE{fredricks65a,
   author = {{Fredricks}, R.~W. and {Scarf}, F.~L. and {Bernstein}, W.},
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}

@ARTICLE{fredricks65b,
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}

@ARTICLE{fredricks70a,
   author = {{Fredricks}, R.~W. and {Coroniti}, F.~V. and {Kennel}, C.~F. and 
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}

@ARTICLE{fredricks70b,
   author = {{Fredricks}, R.~W. and {Crook}, G.~M. and {Kennel}, C.~F. and 
	{Green}, I.~M. and {Scarf}, F.~L. and {Coleman}, P.~J. and {Russell}, C.~T.
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}

@ARTICLE{fujimoto03a,
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}

@ARTICLE{furuya08a,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{fuselier84,
   author = {{Fuselier}, S.~A. and {Gurnett}, D.~A.},
    title = "{Short wavelength ion waves upstream of the earth's bow shock}",
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 keywords = {ELECTROMAGNETIC INTERFERENCE, SIGNAL ANALYZERS, SPACECRAFT ANTENNAS, WAVE PROPAGATION, DOPPLER EFFECT, INTERNATIONAL SUN EARTH EXPLORERS, ION BEAMS, SOLAR WIND, WAVELENGTHS},
     year = 1984,
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      doi = {10.1029/JA089iA01p00091},
   adsurl = {http://adsabs.harvard.edu/abs/1984JGR....89...91F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}
%-----------------------------------------------------------------------------------------
% GGGGGGGGGGGGGG
%-----------------------------------------------------------------------------------------
@ARTICLE{galeev76,
   author = {{Galeev}, A.~A. and {Sagdeev}, R.~Z. and {Shapiro}, V.~D. and 
	{Shevchenko}, V.~I.},
    title = "{Effect of acoustic turbulence on the collapse of Langmuir waves}",
  journal = {ZhETF Pis ma Redaktsiiu},
 keywords = {ACOUSTIC EXCITATION, ELECTRON PHONON INTERACTIONS, ELECTROSTATIC WAVES, PLASMA TURBULENCE, PLASMONS, ELECTRON PLASMA, MAGNETOACOUSTICS},
     year = 1976,
    month = jul,
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    pages = {25-29},
   adsurl = {http://adsabs.harvard.edu/abs/1976ZhPmR..24...25G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{galeev84a,
   author = {{Galeev}, A.~A.},
    title = "{The heating and acceleration of electrons by shocks}",
  journal = {Adv. Space Res.},
 keywords = {BOW WAVES, ELECTRON ACCELERATION, ELECTRON ENERGY, ELECTRON RUNAWAY (PLASMA PHYSICS), PLASMA WAVES, SHOCK WAVES, ELECTRIC CURRENT, ELECTRIC FIELDS, ION ACOUSTIC WAVES, MAGNETOHYDRODYNAMIC WAVES, SHOCK FRONTS},
     year = 1984,
   volume = 4,
    pages = {255-263},
      doi = {10.1016/0273-1177(84)90319-3},
   adsurl = {http://adsabs.harvard.edu/abs/1984AdSpR...4..255G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{galeev86a,
   author = {{Galeev}, A.~A.},
    title = "{Electron and ion heating at supercritical shocks}",
  journal = {Adv. Space Res.},
 keywords = {PLASMA HEATING, SHOCK WAVES, SPACE PLASMAS, SUPERCRITICAL FLOW, DENSITY DISTRIBUTION, ELECTRON ENERGY, ENERGY SPECTRA, INTERCOSMOS SATELLITES, ION BEAMS, PLASMA WAVES},
     year = 1986,
   volume = 6,
    pages = {17-24},
      doi = {10.1016/0273-1177(86)90004-9},
   adsurl = {http://adsabs.harvard.edu/abs/1986AdSpR...6R..17G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{galeev89,
   author = {{Galeev}, A.~A. and {Sagdeev}, R.~Z. and {Shapiro}, V.~D. and 
	{Shevchenko}, V.~I. and {Szego}, K.},
    title = "{MHD turbulence and particle acceleration in a mass-loaded solar wind}",
  journal = {Adv. Space Res.},
 keywords = {HEAVY IONS, MAGNETOHYDRODYNAMIC TURBULENCE, PARTICLE ACCELERATION, SOLAR WIND, BOW WAVES, COMET NUCLEI, GIACOBINI-ZINNER COMET, ION CYCLOTRON RADIATION, MAGNETIC FIELDS, PLASMA OSCILLATIONS, COMETS, MAGNETOHYDRODYNAMICS, PARTICLES, ACCELERATION, VELOCITY, DIAGRAMS, MASS LOADING, SOLAR WIND, CALCULATIONS, TURBULENCE, GIACOBINI-ZINNER, ALFVEN WAVES, PARAMETERS, IONS, MAGNETIC EFFECTS, MAGNETIC FIELDS},
     year = 1989,
   volume = 9,
    pages = {331-336},
      doi = {10.1016/0273-1177(89)90284-6},
   adsurl = {http://adsabs.harvard.edu/abs/1989AdSpR...9..331G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gallagher88a,
   author = {{Gallagher}, D.~L. and {Craven}, P.~D. and {Comfort}, R.~H.},
    title = "{An empirical model of the earth's plasmasphere}",
  journal = {Adv. Space Res.},
 keywords = {ATMOSPHERIC COMPOSITION, ATMOSPHERIC MODELS, MASS SPECTROSCOPY, PLASMASPHERE, DYNAMICS EXPLORER SATELLITES, HYDROGEN IONS, PLASMA DENSITY},
     year = 1988,
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    pages = {15-21},
      doi = {10.1016/0273-1177(88)90258-X},
   adsurl = {http://adsabs.harvard.edu/abs/1988AdSpR...8...15G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{galtier09a,
   author = {{Galtier}, S.},
    title = "{Wave turbulence in magnetized plasmas}",
  journal = {Nonlinear Proc. Geophys.},
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}

@ARTICLE{garanin00a,
   author = {{Garanin}, S.~F. and {Golubev}, A.~I. and {Ismailova}, N.~A.
	},
    title = "{2D Simulation of Perpendicular Collisionless Shock Wave}",
  journal = {Physica Scripta Volume T},
 keywords = {52.35.Tc},
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   volume = 84,
    pages = {200-202},
      doi = {10.1238/Physica.Topical.084a00200},
   adsurl = {http://adsabs.harvard.edu/abs/2000PhST...84..200G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary70a,
   author = {{Gary}, S.~P.},
    title = "{Nonlinear Ion-Acoustic Waves in a Vlasov Plasma}",
  journal = {Phys. Fluids},
     year = 1970,
    month = mar,
   volume = 13,
    pages = {694-700},
      doi = {10.1063/1.1692976},
   adsurl = {http://adsabs.harvard.edu/abs/1970PhFl...13..694G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary70b,
   author = {{Gary}, S.~P.},
    title = "{Electron heating by ion wave turbulence}",
  journal = {Phys. Lett. A},
     year = 1970,
    month = nov,
   volume = 33,
    pages = {301-302},
      doi = {10.1016/0375-9601(70)90150-7},
   adsurl = {http://adsabs.harvard.edu/abs/1970PhLA...33..301G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary70c,
   author = {{Gary}, S.~P. and {Sanderson}, J.~J.},
    title = "{Longitudinal waves in a perpendicular collisionless plasma shock. I. Cold ions}",
  journal = {J. Plasma Phys.},
     year = 1970,
    month = dec,
   volume = 4,
    pages = {739-+},
   adsurl = {http://adsabs.harvard.edu/abs/1970JPlPh...4..739G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary70d,
   author = {{Gary}, S.~P.},
    title = "{Longitudinal waves in a perpendicular collisionless plasma shock. II. Vlasov ions}",
  journal = {J. Plasma Phys.},
     year = 1970,
    month = dec,
   volume = 4,
    pages = {753-+},
   adsurl = {http://adsabs.harvard.edu/abs/1970JPlPh...4..753G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary75,
   author = {{Gary}, S.~P. and {Feldman}, W.~C. and {Forslund}, D.~W. and 
	{Montgomery}, M.~D.},
    title = "{Heat flux instabilities in the solar wind}",
  journal = {J. Geophys. Res.},
 keywords = {HEAT FLUX, MAGNETOHYDRODYNAMIC STABILITY, PLASMA WAVES, SOLAR FLUX, SOLAR WIND, COSMIC PLASMA, MAGNETOELASTIC WAVES, SOLAR ELECTRONS},
     year = 1975,
    month = nov,
   volume = 80,
    pages = {4197-4203},
      doi = {10.1029/JA080i031p04197},
   adsurl = {http://adsabs.harvard.edu/abs/1975JGR....80.4197G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary78a,
   author = {{Gary}, S.~P.},
    title = "{Ion-acoustic-like instabilities in the solar wind}",
  journal = {J. Geophys. Res.},
 keywords = {ACOUSTIC INSTABILITY, DISTRIBUTION FUNCTIONS, SOLAR PHYSICS, SOLAR WIND, DRIFT RATE, HEAT FLUX, ION BEAMS, MAXWELL-BOLTZMANN DENSITY FUNCTION, PHASE VELOCITY, SOLAR CORONA, WHISTLERS},
     year = 1978,
    month = jun,
   volume = 83,
    pages = {2504-2510},
      doi = {10.1029/JA083iA06p02504},
   adsurl = {http://adsabs.harvard.edu/abs/1978JGR....83.2504G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary81a,
   author = {{Gary}, S.~P. and {Ashour-Abdalla}, M.},
    title = "{The lower hybrid density drift instability with cold plasma}",
  journal = {J. Geophys. Res.},
 keywords = {COLD PLASMAS, EARTH MAGNETOSPHERE, HIGH TEMPERATURE PLASMAS, MAGNETOHYDRODYNAMIC STABILITY, PLASMA DENSITY, PLASMA DRIFT, SPACE PLASMAS, ELECTRON ENERGY, ION TEMPERATURE, MAGNETOSPHERIC ELECTRON DENSITY, MAGNETOSPHERIC ION DENSITY, PLASMA COMPOSITION, PLASMA FREQUENCIES, PLASMA SLABS, PLASMA TEMPERATURE, VLASOV EQUATIONS},
     year = 1981,
    month = mar,
   volume = 86,
    pages = {1613-1616},
      doi = {10.1029/JA086iA03p01613},
   adsurl = {http://adsabs.harvard.edu/abs/1981JGR....86.1613G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary81b,
   author = {{Gary}, S.~P. and {Sanderson}, J.~J.},
    title = "{Energy transport by weak electrostatic drift fluctuations}",
  journal = {Phys. Fluids},
 keywords = {ENERGY DISSIPATION, ENERGY TRANSFER, FREE ENERGY, MAGNETOHYDRODYNAMIC STABILITY, PLASMA DRIFT, PLASMA OSCILLATIONS, TEMPERATURE GRADIENTS, DENSITY DISTRIBUTION, ELECTRON ENERGY, ION ACOUSTIC WAVES, ION TEMPERATURE, LANDAU DAMPING, PARTICLE INTERACTIONS, PLASMA SLABS, PLASMA-ELECTROMAGNETIC INTERACTION, TRANSPORT THEORY, VELOCITY DISTRIBUTION, VLASOV EQUATIONS},
     year = 1981,
    month = apr,
   volume = 24,
    pages = {638-650},
      doi = {10.1063/1.863417},
   adsurl = {http://adsabs.harvard.edu/abs/1981PhFl...24..638G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary81c,
   author = {{Gary}, S.~P.},
    title = "{Microinstabilities upstream of the earth's bow shock - A brief review}",
  journal = {J. Geophys. Res.},
 keywords = {BOW WAVES, MAGNETOHYDRODYNAMIC STABILITY, PARTICLE MOTION, SHOCK WAVES, SOLAR WIND, DISTRIBUTION FUNCTIONS, ENERGETIC PARTICLES, ENERGY SOURCES, FREE ENERGY, HIGH ENERGY ELECTRONS, SOLAR TERRESTRIAL INTERACTIONS},
     year = 1981,
    month = jun,
   volume = 86,
    pages = {4331-4336},
      doi = {10.1029/JA086iA06p04331},
   adsurl = {http://adsabs.harvard.edu/abs/1981JGR....86.4331G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary81d,
   author = {{Gary}, S.~P. and {Gosling}, J.~T. and {Forslund}, D.~W.},
    title = "{The electromagnetic ion beam instability upstream of the earth's bow shock}",
  journal = {J. Geophys. Res.},
 keywords = {BOW WAVES, GEOMAGNETISM, ION BEAMS, MAGNETOSPHERIC INSTABILITY, PLASMA-ELECTROMAGNETIC INTERACTION, SHOCK FRONTS, SOLAR TERRESTRIAL INTERACTIONS, COMPUTERIZED SIMULATION, CYCLOTRON FREQUENCY, ENERGETIC PARTICLES, ION ACOUSTIC WAVES, MAGNETIC DISTURBANCES, MAGNETIC FIELD CONFIGURATIONS, PLASMA OSCILLATIONS, WHISTLERS},
     year = 1981,
    month = aug,
   volume = 86,
    pages = {6691-6696},
      doi = {10.1029/JA086iA08p06691},
   adsurl = {http://adsabs.harvard.edu/abs/1981JGR....86.6691G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary81e,
   author = {{Gary}, S.~P. and {Schwartz}, S.~J.},
    title = "{Wave-particle transport by weak electrostatic flow shear fluctuations}",
  journal = {J. Geophys. Res.},
 keywords = {ELECTROSTATIC WAVES, MAGNETOHYDRODYNAMIC STABILITY, PLASMA DYNAMICS, PLASMA OSCILLATIONS, PLASMA-PARTICLE INTERACTIONS, SHEAR FLOW, FLOW VELOCITY, TRANSPORT PROPERTIES, VLASOV EQUATIONS},
     year = 1981,
    month = dec,
   volume = 86,
    pages = {11139-11147},
      doi = {10.1029/JA086iA13p11139},
   adsurl = {http://adsabs.harvard.edu/abs/1981JGR....8611139G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary82a,
   author = {{Gary}, S.~P. and {Thomsen}, M.~F.},
    title = "{An electrostatic parabolic density drift instability}",
  journal = {J. Geophys. Res.},
 keywords = {DENSITY DISTRIBUTION, ELECTROSTATIC WAVES, MAGNETOHYDRODYNAMIC STABILITY, PLASMA DENSITY, PLASMA DRIFT, SPACE PLASMAS, MATHEMATICAL MODELS, PARABOLAS, PLASMA-ELECTROMAGNETIC INTERACTION, TRANSPORT PROPERTIES, VLASOV EQUATIONS},
     year = 1982,
    month = jan,
   volume = 87,
    pages = {73-76},
      doi = {10.1029/JA087iA01p00073},
   adsurl = {http://adsabs.harvard.edu/abs/1982JGR....87...73G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85a,
   author = {{Gary}, S.~P. and {Tokar}, R.~L.},
    title = "{The second-order theory of electromagnetic hot ion beam instabilities}",
  journal = {J. Geophys. Res.},
 keywords = {INTERPLANETARY MAGNETIC FIELDS, ION BEAMS, MAGNETOHYDRODYNAMIC STABILITY, WAVE INTERACTION, COMPUTERIZED SIMULATION, ION DISTRIBUTION, LINEAR EQUATIONS, POLARIZATION (WAVES)},
     year = 1985,
    month = jan,
   volume = 90,
    pages = {65-72},
      doi = {10.1029/JA090iA01p00065},
   adsurl = {http://adsabs.harvard.edu/abs/1985JGR....90...65G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85b,
   author = {{Gary}, S.~P. and {Mellott}, M.~M.},
    title = "{Whistler damping at oblique propagation - Laminar shock precursors}",
  journal = {J. Geophys. Res.},
 keywords = {SHOCK WAVES, SPACE PLASMAS, WAVE ATTENUATION, WAVE PROPAGATION, WHISTLERS, ELECTRON DISTRIBUTION, LANDAU DAMPING, PLASMA WAVES},
     year = 1985,
    month = jan,
   volume = 90,
    pages = {99-104},
      doi = {10.1029/JA090iA01p00099},
   adsurl = {http://adsabs.harvard.edu/abs/1985JGR....90...99G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85c,
   author = {{Gary}, S.~P.},
    title = "{Electromagnetic ion beam instabilities - Hot beams at interplanetary shocks}",
  journal = {Astrophys. J.},
 keywords = {INTERPLANETARY MEDIUM, MAGNETOSPHERIC INSTABILITY, SHOCK WAVES, SPACE PLASMAS, ION BEAMS, MAGNETOHYDRODYNAMIC STABILITY, PLASMA-ELECTROMAGNETIC INTERACTION, WAVE PROPAGATION},
     year = 1985,
    month = jan,
   volume = 288,
    pages = {342-352},
      doi = {10.1086/162797},
   adsurl = {http://adsabs.harvard.edu/abs/1985ApJ...288..342G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85d,
   author = {{Gary}, S.~P. and {Madland}, C.~D.},
    title = "{Electromagnetic electron temperature anisotropy instabilities}",
  journal = {J. Geophys. Res.},
 keywords = {ANISOTROPY, ELECTRON ENERGY, MAGNETOHYDRODYNAMIC STABILITY, MAXWELL-BOLTZMANN DENSITY FUNCTION, SPACE PLASMAS, VLASOV EQUATIONS, MAGNETIC FIELDS, MAXWELL EQUATION, WHISTLERS},
     year = 1985,
    month = aug,
   volume = 90,
    pages = {7607-7610},
      doi = {10.1029/JA090iA08p07607},
   adsurl = {http://adsabs.harvard.edu/abs/1985JGR....90.7607G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85e,
   author = {{Gary}, S.~P.},
    title = "{Electromagnetic electron beam instabilities - Hot, isotropic beams}",
  journal = {J. Geophys. Res.},
 keywords = {ELECTROMAGNETIC RADIATION, ELECTRON BEAMS, ENERGETIC PARTICLES, PLASMA-PARTICLE INTERACTIONS, COLLISIONLESS PLASMAS, COMPUTERIZED SIMULATION, ISOTROPIC MEDIA, NONRELATIVISTIC MECHANICS, PHASE VELOCITY, WHISTLERS},
     year = 1985,
    month = nov,
   volume = 90,
    pages = {10815-+},
      doi = {10.1029/JA090iA11p10815},
   adsurl = {http://adsabs.harvard.edu/abs/1985JGR....9010815G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary85f,
   author = {{Gary}, S.~P. and {Madland}, C.~D. and {Tsurutani}, B.~T.},
    title = "{Electromagnetic ion beam instabilities. II}",
  journal = {Phys. Fluids},
 keywords = {GEOMAGNETIC TAIL, ION BEAMS, MAGNETIC DISTURBANCES, MAGNETOHYDRODYNAMIC STABILITY, PLASMA-PARTICLE INTERACTIONS, SPACE PLASMAS, ION CYCLOTRON RADIATION, SHOCK WAVES},
     year = 1985,
    month = dec,
   volume = 28,
    pages = {3691-3695},
      doi = {10.1063/1.865101},
   adsurl = {http://adsabs.harvard.edu/abs/1985PhFl...28.3691G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary87a,
   author = {{Gary}, S.~P. and {Omidi}, N.},
    title = "{The ion-ion acoustic instability}",
  journal = {J. Plasma Phys.},
 keywords = {ACOUSTIC INSTABILITY, DRIFT RATE, ION ACOUSTIC WAVES, ION BEAMS, MAGNETOHYDRODYNAMIC STABILITY, BEAM INTERACTIONS, BOW WAVES, ELECTRON ENERGY, ION DENSITY (CONCENTRATION), VLASOV EQUATIONS},
     year = 1987,
    month = feb,
   volume = 37,
    pages = {45-61},
   adsurl = {http://adsabs.harvard.edu/abs/1987JPlPh..37...45G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary87b,
   author = {{Gary}, S.~P.},
    title = "{The electron/electron acoustic instability}",
  journal = {Phys. Fluids},
     year = 1987,
    month = sep,
   volume = 30,
    pages = {2745-2749},
      doi = {10.1063/1.866040},
   adsurl = {http://adsabs.harvard.edu/abs/1987PhFl...30.2745G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary87c,
   author = {{Gary}, S.~P. and {Tokar}, R.~L. and {Winske}, D.},
    title = "{Ion/ion and electron/ion cross-field instabilities near the lower hybrid frequency}",
  journal = {J. Geophys. Res.},
 keywords = {BOW WAVES, CROSSED FIELDS, ELECTRON BEAMS, ION BEAMS, MAGNETIC FIELDS, MAGNETOHYDRODYNAMIC STABILITY, SHOCK WAVES, SPACE PLASMAS, VLASOV EQUATIONS},
     year = 1987,
    month = sep,
   volume = 92,
    pages = {10029-+},
      doi = {10.1029/JA092iA09p10029},
   adsurl = {http://adsabs.harvard.edu/abs/1987JGR....9210029G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary93a,
   author = {{Gary}, S.~P. and {Fuselier}, S.~A. and {Anderson}, B.~J.},
    title = "{Ion anisotropy instabilities in the magnetosheath}",
  journal = {J. Geophys. Res.},
 keywords = {ION DISTRIBUTION, MAGNETOHYDRODYNAMIC STABILITY, MAGNETOSHEATH, MAGNETOSPHERIC ION DENSITY, SPACE PLASMAS, CYCLOTRON RESONANCE, MATHEMATICAL MODELS},
     year = 1993,
    month = feb,
   volume = 98,
    pages = {1481-1488},
      doi = {10.1029/92JA01844},
   adsurl = {http://adsabs.harvard.edu/abs/1993JGR....98.1481G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary93b,
   author = {{Gary}, S.~P. and {McKean}, M.~E. and {Winske}, D.},
    title = "{Ion cyclotron anisotropy instabilities in the magnetosheath - Theory and simulations}",
  journal = {J. Geophys. Res.},
 keywords = {ION CYCLOTRON RADIATION, ION DISTRIBUTION, MAGNETOHYDRODYNAMIC STABILITY, MAGNETOSHEATH, VLASOV EQUATIONS, ANISOTROPY, COMPUTERIZED SIMULATION, MAXWELL EQUATION},
     year = 1993,
    month = mar,
   volume = 98,
    pages = {3963-3971},
      doi = {10.1029/92JA02585},
   adsurl = {http://adsabs.harvard.edu/abs/1993JGR....98.3963G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@BOOK{gary93c,
     author = {{Gary}, S.~P.},
      title = "{Theory of Space Plasma Microinstabilities}",
  booktitle = {Theory of Space Plasma Microinstabilities, by S.~Peter Gary, pp.~193.~ISBN 0521431670.~Cambridge, UK: Cambridge University Press, September 1993.},
       year = 1993,
  publisher = "Cambridge University Press",
     series = "Cambridge Atmospheric and Space Science Series",
       isbn = 0521431670,
      month = sep,
     adsurl = {http://adsabs.harvard.edu/abs/1993tspm.book.....G},
    adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary93d,
   author = {{Gary}, S.~P. and {Anderson}, B.~J. and {Denton}, R.~E. and 
	{Fuselier}, S.~A. and {McKean}, M.~E. and {Winske}, D.},
    title = "{Ion anisotropies in the magnetosheath}",
  journal = {Geophys. Res. Lett.},
 keywords = {DISTRIBUTION FUNCTIONS, MAGNETOHYDRODYNAMIC STABILITY, MAGNETOSHEATH, MAGNETOSPHERIC ION DENSITY, ANISOTROPIC MEDIA, COMPUTERIZED SIMULATION},
     year = 1993,
    month = sep,
   volume = 20,
    pages = {1767-1770},
      doi = {10.1029/93GL01700},
   adsurl = {http://adsabs.harvard.edu/abs/1993GeoRL..20.1767G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary94,
   author = {{Gary}, S.~P. and {Scime}, E.~E. and {Phillips}, J.~L. and {Feldman}, W.~C.
	},
    title = "{The whistler heat flux instability: Threshold conditions in the solar wind}",
  journal = {J. Geophys. Res.},
 keywords = {ANISOTROPIC MEDIA, ELECTRONS, HEAT FLUX, HELIOSPHERE, MAGNETOHYDRODYNAMIC STABILITY, SOLAR WIND, WAVE-PARTICLE INTERACTIONS, WHISTLERS, CLOSURE LAW, ELECTRON DISTRIBUTION, MATHEMATICAL MODELS, PLASMA PHYSICS, ULYSSES MISSION, WAVE DISPERSION},
     year = 1994,
    month = dec,
   volume = 99,
    pages = {23391-+},
      doi = {10.1029/94JA02067},
   adsurl = {http://adsabs.harvard.edu/abs/1994JGR....9923391G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary96,
   author = {{Gary}, S.~P. and {Wang}, J.},
    title = "{Whistler instability: Electron anisotropy upper bound}",
  journal = {J. Geophys. Res.},
 keywords = {Magnetospheric Physics: Plasma waves and instabilities, Space Plasma Physics: Kinetic and MHD theory, Space Plasma Physics: Wave/particle interactions, Space Plasma Physics: Waves and instabilities},
     year = 1996,
    month = may,
   volume = 101,
    pages = {10749-10754},
      doi = {10.1029/96JA00323},
   adsurl = {http://adsabs.harvard.edu/abs/1996JGR...10110749G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary98,
   author = {{Gary}, S.~P. and {Newbury}, J.~A. and {Goldstein}, B.~E.},
    title = "{Lower bound for electron core beta in the solar wind}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Waves and instabilities},
     year = 1998,
    month = jul,
   volume = 103,
    pages = {14559-14566},
      doi = {10.1029/98JA01172},
   adsurl = {http://adsabs.harvard.edu/abs/1998JGR...10314559G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary99,
   author = {{Gary}, S.~P. and {Skoug}, R.~M. and {Daughton}, W.},
    title = "{Electron heat flux constraints in the solar wind.}",
  journal = {Phys. Plasmas},
 keywords = {Solar Wind: Magnetic Fields},
     year = 1999,
    month = jun,
   volume = 6,
    pages = {2607-2612},
      doi = {10.1063/1.873532},
   adsurl = {http://adsabs.harvard.edu/abs/1999PhPl....6.2607G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary00a,
   author = {{Gary}, S.~P. and {Li}, H.},
    title = "{Whistler Heat Flux Instability at High Beta}",
  journal = {Astrophys. J.},
 keywords = {INSTABILITIES, PLASMAS, SUN: SOLAR WIND, STARS: WINDS, OUTFLOWS},
     year = 2000,
    month = feb,
   volume = 529,
    pages = {1131-1135},
      doi = {10.1086/308294},
   adsurl = {http://adsabs.harvard.edu/abs/2000ApJ...529.1131G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary00b,
   author = {{Gary}, S.~P. and {Winske}, D. and {Hesse}, M.},
    title = "{Electron temperature anisotropy instabilities: Computer simulations}",
  journal = {J. Geophys. Res.},
 keywords = {Magnetospheric Physics: Plasma waves and instabilities, Space Plasma Physics: Numerical simulation studies, Space Plasma Physics: Wave/particle interactions, Space Plasma Physics: Waves and instabilities},
     year = 2000,
    month = may,
   volume = 105,
    pages = {10751-10760},
      doi = {10.1029/1999JA000322},
   adsurl = {http://adsabs.harvard.edu/abs/2000JGR...10510751G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary00c,
   author = {{Gary}, S.~P. and {Kazimura}, Y. and {Li}, H. and {Sakai}, J.-I.
	},
    title = "{Simulations of electron/electron instabilities: Electromagnetic fluctuations}",
  journal = {Phys. Plasmas},
 keywords = {P700340700330PLASMA SIMULATION, PLASMA DRIFT, PLASMA INSTABILITY, ELECTROMAGNETIC RADIATION, FLUCTUATIONS, ELECTRON CYCLOTRON-RESONANCE, ELECTRON-ELECTRON COLLISIONS, PLASMA HEATING, BOLTZMANN-VLASOV EQUATION, plasma fluctuations, Vlasov equation},
     year = 2000,
    month = feb,
   volume = 7,
    pages = {448-456},
      doi = {10.1063/1.873829},
   adsurl = {http://adsabs.harvard.edu/abs/2000PhPl....7..448G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary06,
   author = {{Gary}, S.~P. and {Karimabadi}, H.},
    title = "{Linear theory of electron temperature anisotropy instabilities: Whistler, mirror, and Weibel}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Kinetic waves and instabilities, Magnetospheric Physics: Plasma waves and instabilities (2471), Magnetospheric Physics: Magnetic reconnection (7526, 7835), Space Plasma Physics: Magnetic reconnection (2723, 7526)},
     year = 2006,
    month = nov,
   volume = 111,
    pages = {11224-+},
      doi = {10.1029/2006JA011764},
   adsurl = {http://adsabs.harvard.edu/abs/2006JGRA..11111224G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gary08,
   author = {{Gary}, S.~P. and {Saito}, S. and {Li}, H.},
    title = "{Cascade of whistler turbulence: Particle-in-cell simulations}",
  journal = {Geophys. Res. Lett.},
 keywords = {Space Plasma Physics: Turbulence (4490), Space Plasma Physics: Nonlinear phenomena (4400, 6944), Interplanetary Physics: Plasma waves and turbulence},
     year = 2008,
    month = jan,
   volume = 35,
    pages = {2104-+},
      doi = {10.1029/2007GL032327},
   adsurl = {http://adsabs.harvard.edu/abs/2008GeoRL..3502104G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin95a,
   author = {{Gedalin}, M. and {Gedalin}, K. and {Balikhin}, M. and {Krasnosselskikh}, V.
	},
    title = "{Demagnetization of electrons in the electromagnetic field structure, typical for quasi-perpendicular collisionless shock front}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Charged particle motion and acceleration, Space Plasma Physics: Shock waves, Space Plasma Physics: Numerical simulation studies},
     year = 1995,
    month = jun,
   volume = 100,
    pages = {9481-9488},
      doi = {10.1029/94JA03369},
   adsurl = {http://adsabs.harvard.edu/abs/1995JGR...100.9481G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin95b,
   author = {{Gedalin}, M. and {Gedalin}, K. and {Balikhin}, M. and {Krasnosselskikh}, V. and 
	{Woolliscroft}, L.~J.~C.},
    title = "{Demagnetization of electrons in inhomogeneous E$_{\perp}$B: Implications for electron heating in shocks}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Charged particle motion and acceleration, Space Plasma Physics: Shock waves, Interplanetary Physics: Planetary bow shocks},
     year = 1995,
    month = oct,
   volume = 100,
    pages = {19911-19918},
      doi = {10.1029/95JA01399},
   adsurl = {http://adsabs.harvard.edu/abs/1995JGR...10019911G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin96a,
   author = {{Gedalin}, M.},
    title = "{Ion reflection at the shock front revisited}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Shock waves, Interplanetary Physics: Interplanetary shocks, Interplanetary Physics: Solar wind plasma},
     year = 1996,
    month = mar,
   volume = 101,
    pages = {4871-4878},
      doi = {10.1029/95JA03669},
   adsurl = {http://adsabs.harvard.edu/abs/1996JGR...101.4871G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin96b,
   author = {{Gedalin}, M.},
    title = "{Transmitted ions and ion heating in nearly perpendicular low-Mach number shocks}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Shock waves, Interplanetary Physics: Planetary bow shocks, Interplanetary Physics: Interplanetary shocks, Interplanetary Physics: Solar wind plasma},
     year = 1996,
    month = jul,
   volume = 101,
    pages = {15569-15578},
      doi = {10.1029/96JA00924},
   adsurl = {http://adsabs.harvard.edu/abs/1996JGR...10115569G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin97a,
   author = {{Gedalin}, M.},
    title = "{Ion Dynamics and Distribution At the Quasiperpendicular Collisionless Shock Front}",
  journal = {Surveys in Geophysics},
     year = 1997,
   volume = 18,
    pages = {541-566},
      doi = {10.1023/A:1006509702173},
   adsurl = {http://adsabs.harvard.edu/abs/1997SGeo...18..541G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin97b,
   author = {{Gedalin}, M.},
    title = "{Ion heating in oblique low-Mach number shocks}",
  journal = {Geophys. Res. Lett.},
 keywords = {Space Plasma Physics: Shock waves, Interplanetary Physics: Planetary bow shocks, Space Plasma Physics: Charged particle motion and acceleration},
     year = 1997,
    month = oct,
   volume = 24,
    pages = {2511-2514},
      doi = {10.1029/97GL02524},
   adsurl = {http://adsabs.harvard.edu/abs/1997GeoRL..24.2511G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin04a,
   author = {{Gedalin}, M. and {Balikhin}, M.},
    title = "{Electric potential in the low-Mach-number quasi-perpendicular collisionless shock ramp revisited}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Shock waves, Interplanetary Physics: Planetary bow shocks, Interplanetary Physics: Interplanetary shocks, Space Plasma Physics: Kinetic and MHD theory},
     year = 2004,
    month = mar,
   volume = 109,
    pages = {3106-+},
      doi = {10.1029/2003JA010219},
   adsurl = {http://adsabs.harvard.edu/abs/2004JGRA..10903106G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gedalin08a,
   author = {{Gedalin}, M. and {Liverts}, M. and {Balikhin}, M.~A.},
    title = "{Distribution of escaping ions produced by non-specular reflection at the stationary quasi-perpendicular shock front}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Shock waves (4455), Space Plasma Physics: Charged particle motion and acceleration, Space Plasma Physics: Particle acceleration, Interplanetary Physics: Planetary bow shocks, Interplanetary Physics: Interplanetary shocks},
     year = 2008,
    month = may,
   volume = 113,
    pages = {5101-+},
      doi = {10.1029/2007JA012894},
   adsurl = {http://adsabs.harvard.edu/abs/2008JGRA..11305101G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gendrin74,
   author = {{Gendrin}, R.},
    title = "{Phase-bunching and other non-linear processes occurring in gyroresonant wave-particle interactions}",
  journal = {Astrophys. and Space Sci.},
     year = 1974,
    month = may,
   volume = 28,
    pages = {245-266},
      doi = {10.1007/BF00642254},
   adsurl = {http://adsabs.harvard.edu/abs/1974Ap%26SS..28..245G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ghavamian07a,
   author = {{Ghavamian}, P. and {Laming}, J.~M. and {Rakowski}, C.~E.},
    title = "{A Physical Relationship between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks}",
  journal = {Astrophys. J.},
   eprint = {arXiv:astro-ph/0611306},
 keywords = {ISM: Cosmic Rays, ISM: Kinematics and Dynamics, Plasmas, Shock Waves, ISM: Supernova Remnants},
     year = 2007,
    month = jan,
   volume = 654,
    pages = {L69-L72},
      doi = {10.1086/510740},
   adsurl = {http://adsabs.harvard.edu/abs/2007ApJ...654L..69G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone91a,
   author = {{Giacalone}, J. and {Armstrong}, T.~P. and {Decker}, R.~B.},
    title = "{Effect of magnetic overshoot on shock drift acceleration}",
  journal = {J. Geophys. Res.},
 keywords = {COMPUTERIZED SIMULATION, FIELD ALIGNED CURRENTS, MAGNETOHYDRODYNAMIC WAVES, PARTICLE ACCELERATION, MACH NUMBER, PLASMA DYNAMICS},
     year = 1991,
    month = mar,
   volume = 96,
    pages = {3621-3626},
      doi = {10.1029/90JA01627},
   adsurl = {http://adsabs.harvard.edu/abs/1991JGR....96.3621G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone93a,
   author = {{Giacalone}, J. and {Schwartz}, S.~J. and {Burgess}, D.},
    title = "{Observations of suprathermal ions in association with SLAMS}",
  journal = {Geophys. Res. Lett.},
 keywords = {BOW WAVES, EARTH ATMOSPHERE, ION TEMPERATURE, MAGNETIC FIELD CONFIGURATIONS, SATELLITE OBSERVATION, SHOCK WAVES, EXTREMELY LOW RADIO FREQUENCIES, MAGNETOHYDRODYNAMIC FLOW},
     year = 1993,
    month = jan,
   volume = 20,
    pages = {149-152},
      doi = {10.1029/93GL00067},
   adsurl = {http://adsabs.harvard.edu/abs/1993GeoRL..20..149G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone03a,
   author = {{Giacalone}, J.},
    title = "{The physics of particle acceleration by collisionless shocks}",
  journal = {Planet. Space Sci.},
     year = 2003,
    month = sep,
   volume = 51,
    pages = {659-664},
   adsurl = {http://adsabs.harvard.edu/abs/2003P%26SS...51..659G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone05a,
   author = {{Giacalone}, J.},
    title = "{The Efficient Acceleration of Thermal Protons by Perpendicular Shocks}",
  journal = {Astrophys. J.},
 keywords = {Acceleration of Particles, ISM: Cosmic Rays, Magnetic Fields, Methods: Numerical, Shock Waves},
     year = 2005,
    month = jul,
   volume = 628,
    pages = {L37-L40},
      doi = {10.1086/432510},
   adsurl = {http://adsabs.harvard.edu/abs/2005ApJ...628L..37G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone06a,
   author = {{Giacalone}, J. and {Jokipii}, J.~R.},
    title = "{Shock Acceleration of High-Energy Cosmic Rays: The Importance of the Magnetic-Field Angle}",
  journal = {Journal of Physics Conference Series},
     year = 2006,
    month = oct,
   volume = 47,
    pages = {160-167},
      doi = {10.1088/1742-6596/47/1/020},
   adsurl = {http://adsabs.harvard.edu/abs/2006JPhCS..47..160G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone07a,
   author = {{Giacalone}, J. and {Jokipii}, J.~R.},
    title = "{Magnetic Field Amplification by Shocks in Turbulent Fluids}",
  journal = {Astrophys. J.},
 keywords = {Magnetic Fields, Shock Waves, Turbulence},
     year = 2007,
    month = jul,
   volume = 663,
    pages = {L41-L44},
      doi = {10.1086/519994},
   adsurl = {http://adsabs.harvard.edu/abs/2007ApJ...663L..41G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{giacalone08a,
   author = {{Giacalone}, J. and {Neugebauer}, M.},
    title = "{The Energy Spectrum of Energetic Particles Downstream of Turbulent Collisionless Shocks}",
  journal = {Astrophys. J.},
 keywords = {Acceleration of Particles, Interplanetary Medium, Turbulence},
     year = 2008,
    month = jan,
   volume = 673,
    pages = {629-636},
      doi = {10.1086/524008},
   adsurl = {http://adsabs.harvard.edu/abs/2008ApJ...673..629G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{ginzburg58,
   author = {{Ginzburg}, V.~L. and {Zhelezniakov}, V.~V.},
    title = "{On the Possible Mechanisms of Sporadic Solar Radio Emission (Radiation in an Isotropic Plasma)}",
  journal = {Soviet Astronomy},
     year = 1958,
    month = oct,
   volume = 2,
    pages = {653-+},
   adsurl = {http://adsabs.harvard.edu/abs/1958SvA.....2..653G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gloeckler94a,
   author = {{Gloeckler}, G. and {Geiss}, J. and {Roelof}, E.~C. and {Fisk}, L.~A. and 
	{Ipavich}, F.~M. and {Ogilvie}, K.~W. and {Lanzerotti}, L.~J. and 
	{von Steiger}, R. and {Wilken}, B.},
    title = "{Acceleration of interstellar pickup ions in the disturbed solar wind observed on ULYSSES}",
  journal = {J. Geophys. Res.},
 keywords = {COROTATION, HELIUM IONS, HYDROGEN IONS, PARTICLE ACCELERATION, SOLAR WIND, ULYSSES MISSION, DISTRIBUTION FUNCTIONS, SHOCK WAVES, SPATIAL DISTRIBUTION, STATISTICAL ANALYSIS, VELOCITY DISTRIBUTION},
     year = 1994,
    month = sep,
   volume = 99,
    pages = {17637-+},
      doi = {10.1029/94JA01509},
   adsurl = {http://adsabs.harvard.edu/abs/1994JGR....9917637G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{gloeckler95,
   author = {{Gloeckler}, G. and {Balsiger}, H. and {B{\"u}rgi}, A. and {Bochsler}, P. and 
	{Fisk}, L.~A. and {Galvin}, A.~B. and {Geiss}, J. and {Gliem}, F. and 
	{Hamilton}, D.~C. and {Holzer}, T.~E. and {Hovestadt}, D. and 
	{Ipavich}, F.~M. and {Kirsch}, E. and {Lundgren}, R.~A. and 
	{Ogilvie}, K.~W. and {Sheldon}, R.~B. and {Wilken}, B.},
    title = "{The Solar Wind and Suprathermal Ion Composition Investigation on the Wind Spacecraft}",
  journal = {Space Science Reviews},
     year = 1995,
    month = feb,
   volume = 71,
    pages = {79-124},
      doi = {10.1007/BF00751327},
   adsurl = {http://adsabs.harvard.edu/abs/1995SSRv...71...79G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{gloeckler03a,
   author = {{Gloeckler}, G.},
    title = "{Ubiquitous Suprathermal Tails on the Solar Wind and Pickup Ion Distributions}",
 keywords = {Particle emission, solar wind, Particle acceleration, Solar wind plasma; sources of solar wind},
booktitle = {Solar Wind Ten},
     year = 2003,
   series = {American Institute of Physics Conference Series},
   volume = 679,
   editor = "{M.~Velli, R.~Bruno, F.~Malara, \& B.~Bucci}",
    month = sep,
    pages = {583-588},
      doi = {10.1063/1.1618663},
   adsurl = {http://adsabs.harvard.edu/abs/2003AIPC..679..583G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{goerke90,
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@ARTICLE{gurnett79c,
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}

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}

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%-----------------------------------------------------------------------------------------
% HHHHHHHHHHHHHH
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% IIIIIIIIIIIIII
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% JJJJJJJJJJJJJJ
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% KKKKKKKKKKKKKK
%-----------------------------------------------------------------------------------------
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}

@ARTICLE{katoh08a,
   author = {{Katoh}, Y. and {Omura}, Y. and {Summers}, D.},
    title = "{Rapid energization of radiation belt electrons by nonlinear wave trapping}",
  journal = {Ann. Geophys.},
     year = 2008,
    month = nov,
   volume = 26,
    pages = {3451-3456},
   adsurl = {http://adsabs.harvard.edu/abs/2008AnGeo..26.3451K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kaur09a,
   author = {{Kaur}, S. and {Sharma}, A.~K. and {Salih}, H.~A.},
    title = "{Resonant second harmonic generation of a Gaussian electromagnetic beam in a collisional magnetoplasma}",
  journal = {Phys. Plasmas},
 keywords = {plasma collision processes, plasma electromagnetic wave propagation, plasma magnetohydrodynamics, plasma ohmic heating, plasma oscillations, plasma radiofrequency heating},
     year = 2009,
    month = apr,
   volume = 16,
    pages = {042509-+},
      doi = {10.1063/1.3114970},
   adsurl = {http://adsabs.harvard.edu/abs/2009PhPl...16d2509K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kawano95,
   author = {{Kawano}, H. and {Higuchi}, T.},
    title = "{The bootstrap method in space physics: Error estimation for the minimum variance analysis}",
  journal = {Geophys. Res. Lett.},
 keywords = {Magnetospheric Physics: Magnetopause, cusp, and boundary layers, Magnetospheric Physics: MHD waves and instabilities, Magnetospheric Physics: General or miscellaneous, Space Plasma Physics: General or miscellaneous},
     year = 1995,
    month = feb,
   volume = 22,
    pages = {307-310},
      doi = {10.1029/94GL02969},
   adsurl = {http://adsabs.harvard.edu/abs/1995GeoRL..22..307K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg62,
   author = {{Kellogg}, P.~J.},
    title = "{Flow of Plasma around the Earth}",
  journal = {J. Geophys. Res.},
     year = 1962,
    month = sep,
   volume = 67,
    pages = {3805-+},
      doi = {10.1029/JZ067i010p03805},
   adsurl = {http://adsabs.harvard.edu/abs/1962JGR....67.3805K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg64,
   author = {{Kellogg}, P.~J.},
    title = "{Solitary Waves in Cold Collisionless Plasma}",
  journal = {Phys. Fluids},
     year = 1964,
    month = oct,
   volume = 7,
    pages = {1555-1571},
      doi = {10.1063/1.1711061},
   adsurl = {http://adsabs.harvard.edu/abs/1964PhFl....7.1555K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg65,
   author = {{Kellogg}, P.~J.},
    title = "{Some Properties of the Two-Stream Instability at Large Amplitudes}",
  journal = {Physics of Fluids},
     year = 1965,
    month = jan,
   volume = 8,
    pages = {102-110},
      doi = {10.1063/1.1761074},
   adsurl = {http://adsabs.harvard.edu/abs/1965PhFl....8..102K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg86a,
   author = {{Kellogg}, P.~J. and {Monson}, S.~J. and {Bernstein}, W. and 
	{Whalen}, B.~A.},
    title = "{Observations of waves generated by electron beams in the ionosphere}",
  journal = {J. Geophys. Res.},
 keywords = {EARTH IONOSPHERE, ELECTRON BEAMS, PARTICLE ACCELERATORS, PLASMA FREQUENCIES, ROCKET-BORNE INSTRUMENTS, WAVE GENERATION, BANDWIDTH, LOW FREQUENCIES, PAYLOADS, SPACECRAFT ANTENNAS},
     year = 1986,
    month = nov,
   volume = 91,
    pages = {12065-12077},
      doi = {10.1029/JA091iA11p12065},
   adsurl = {http://adsabs.harvard.edu/abs/1986JGR....9112065K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg86b,
   author = {{Kellogg}, P.~J.},
    title = "{Observations concerning the generation and propagation of Type III solar bursts}",
  journal = {Astron. \& Astrophys.},
 keywords = {SOLAR ELECTRONS, TYPE 3 BURSTS, CERENKOV RADIATION, HARMONICS, HELIOS PROJECT, SOLAR WIND},
     year = 1986,
    month = nov,
   volume = 169,
    pages = {329-335},
   adsurl = {http://adsabs.harvard.edu/abs/1986A%26A...169..329K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg90,
   author = {{Kellogg}, P.~J. and {Monson}, S.~J. and {Whalen}, B.~A.},
    title = "{Observation of an antenna-plasma instability}",
  journal = {J. Geophys. Res.},
 keywords = {MAGNETOHYDRODYNAMIC STABILITY, PLASMA ANTENNAS, ROCKET FLIGHT, SPACE PLASMAS, DIPOLE ANTENNAS, ELECTRICAL IMPEDANCE, GEOMAGNETISM, PHASE SHIFT},
     year = 1990,
    month = jun,
   volume = 95,
    pages = {7773-7788},
      doi = {10.1029/JA095iA06p07773},
   adsurl = {http://adsabs.harvard.edu/abs/1990JGR....95.7773K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg92a,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Lin}, N. and {Monson}, S.~J. and 
	{Balogh}, A. and {Forsyth}, R.~J. and {Stone}, R.~G.},
    title = "{Low frequency magnetic signals associated with Langmuir waves}",
  journal = {Geophys. Res. Lett.},
 keywords = {ELECTROSTATIC WAVES, LOW FREQUENCIES, PLASMA FREQUENCIES, TYPE 3 BURSTS, ULYSSES MISSION, FOURIER TRANSFORMATION, ION ACOUSTIC WAVES, PLASMA WAVES, WHISTLERS},
     year = 1992,
    month = jun,
   volume = 19,
    pages = {1299-1302},
      doi = {10.1029/92GL01033},
   adsurl = {http://adsabs.harvard.edu/abs/1992GeoRL..19.1299K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg92b,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Howard}, R.~L. and {Monson}, S.~J.
	},
    title = "{Evidence for Langmuir wave collapse in the interplanetary plasma}",
  journal = {Geophys. Res. Lett.},
 keywords = {ELECTROSTATIC WAVES, SOLAR RADIO BURSTS, SOLAR WIND, SPACE PLASMAS, ULYSSES MISSION, MAGNETOHYDRODYNAMIC STABILITY, PLASMA FREQUENCIES, SHOCK WAVES},
     year = 1992,
    month = jun,
   volume = 19,
    pages = {1303-1306},
      doi = {10.1029/92GL01016},
   adsurl = {http://adsabs.harvard.edu/abs/1992GeoRL..19.1303K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{kellogg96a,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J. and {Balogh}, A. and 
	{Forsyth}, R.~J.},
    title = "{Some remarks on waves in the solar wind.}",
 keywords = {Solar Wind: Plasma Waves, Solar Wind: Solar Radio Bursts, Solar Wind: Magnetic Fields},
booktitle = {American Institute of Physics Conference Series},
     year = 1996,
   series = {American Institute of Physics Conference Series},
   volume = 382,
   editor = {{Winterhalter}, D. and {Gosling}, J.~T. and {Habbal}, S.~R. and 
	{Kurth}, W.~S. and {Neugebauer}, M.},
    pages = {214-219},
      doi = {10.1063/1.51387},
   adsurl = {http://adsabs.harvard.edu/abs/1996AIPC..382..214K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg96b,
   author = {{Kellogg}, P.~J. and {Monson}, S.~J. and {Goetz}, K. and {Howard}, R.~L. and 
	{Bougeret}, J.-L. and {Kaiser}, M.~L.},
    title = "{Early wind observations of bow shock and foreshock waves}",
  journal = {Geophys. Res. Lett.},
 keywords = {Interplanetary Physics: MHD waves and turbulence, Interplanetary Physics: Plasma waves and turbulence, Planetology: Comets and Small Bodies: Plasma and MHD instabilities},
     year = 1996,
   volume = 23,
    pages = {1243-1246},
      doi = {10.1029/96GL01067},
   adsurl = {http://adsabs.harvard.edu/abs/1996GeoRL..23.1243K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg96c,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J. and {Bougeret}, J.-L. and 
	{Manning}, R. and {Kaiser}, M.~L.},
    title = "{Observations of plasma waves during a traversal of the moon's wake}",
  journal = {Geophys. Res. Lett.},
 keywords = {Interplanetary Physics: MHD waves and turbulence, Interplanetary Physics: Plasma waves and turbulence, Planetology: Comets and Small Bodies: Plasma and MHD instabilities},
     year = 1996,
   volume = 23,
    pages = {1267-1270},
      doi = {10.1029/96GL00376},
   adsurl = {http://adsabs.harvard.edu/abs/1996GeoRL..23.1267K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg99a,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J. and {Bale}, S.~D.
	},
    title = "{A search for Langmuir solitons in the Earth's foreshock}",
  journal = {J. Geophys. Res.},
 keywords = {Magnetospheric Physics: Plasma waves and instabilities, Magnetospheric Physics: Solar wind/magnetosphere interactions, Space Plasma Physics: Waves and instabilities},
     year = 1999,
    month = apr,
   volume = 104,
    pages = {6751-6758},
      doi = {10.1029/1999JA900021},
   adsurl = {http://adsabs.harvard.edu/abs/1999JGR...104.6751K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg99b,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J. and {Wygant}, J.~R.
	},
    title = "{A density and current plasma wave antenna}",
  journal = {J. Geophys. Res.},
 keywords = {Solar Physics, Astrophysics, and Astronomy},
     year = 1999,
    month = jun,
   volume = 104,
    pages = {12627-12636},
      doi = {10.1029/1999JA900095},
   adsurl = {http://adsabs.harvard.edu/abs/1999JGR...10412627K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg99c,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J. and {Bale}, S.~D.
	},
    title = "{Langmuir waves in a fluctuating solar wind}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Waves and instabilities},
     year = 1999,
    month = aug,
   volume = 104,
    pages = {17069-17078},
      doi = {10.1029/1999JA900163},
   adsurl = {http://adsabs.harvard.edu/abs/1999JGR...10417069K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg00,
   author = {{Kellogg}, P.~J.},
    title = "{Fluctuations and Ion Isotropy in the Solar Wind}",
  journal = {Astrophys. J.},
 keywords = {SUN: SOLAR WIND},
     year = 2000,
    month = jan,
   volume = 528,
    pages = {480-485},
      doi = {10.1086/308147},
   adsurl = {http://adsabs.harvard.edu/abs/2000ApJ...528..480K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg01a,
   author = {{Kellogg}, P.~J. and {Gurnett}, D.~A. and {Hospodarsky}, G.~B. and 
	{Kurth}, W.~S.},
    title = "{Ion isotropy and ion resonant waves in the solar wind: Cassini observations}",
  journal = {Geophys. Res. Lett.},
 keywords = {Interplanetary Physics: Plasma waves and turbulence, Interplanetary Physics: Solar wind plasma, Radio Science: Waves in plasma},
     year = 2001,
    month = jan,
   volume = 28,
    pages = {87-90},
      doi = {10.1029/2000GL012100},
   adsurl = {http://adsabs.harvard.edu/abs/2001GeoRL..28...87K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg01b,
   author = {{Kellogg}, P.~J. and {Bale}, S.~D.},
    title = "{Antenna-plasma and antenna-spacecraft resistance on the Wind spacecraft}",
  journal = {J. Geophys. Res.},
 keywords = {Electromagnetics: Antennas, Electromagnetics: Instrumentation and techniques, Space Plasma Physics: Instruments and techniques},
     year = 2001,
    month = sep,
   volume = 106,
    pages = {18721-18728},
      doi = {10.1029/2001JA900051},
   adsurl = {http://adsabs.harvard.edu/abs/2001JGR...10618721K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg03a,
   author = {{Kellogg}, P.~J. and {Gurnett}, D.~A. and {Hospodarsky}, G.~B. and 
	{Kurth}, W.~S. and {Dougherty}, M.~K. and {Forsyth}, R.~J.},
    title = "{Ion isotropy and ion resonant waves in the solar wind: Corrected Cassini observations}",
  journal = {J. Geophys. Res.},
 keywords = {Interplanetary Physics: Plasma waves and turbulence, Interplanetary Physics: Solar wind plasma, Radio Science: Waves in plasma, Space Plasma Physics: Spacecraft sheaths, wakes, charging, Space Plasma Physics: Waves and instabilities,},
     year = 2003,
    month = jan,
   volume = 108,
    pages = {1045-+},
      doi = {10.1029/2002JA009312},
   adsurl = {http://adsabs.harvard.edu/abs/2003JGRA..108.1045K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg03b,
   author = {{Kellogg}, P.~J.},
    title = "{Langmuir waves associated with collisionless shocks; a review}",
  journal = {Planet. Space Sci.},
     year = 2003,
    month = sep,
   volume = 51,
    pages = {681-691},
   adsurl = {http://adsabs.harvard.edu/abs/2003P%26SS...51..681K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg04,
   author = {{Kellogg}, P.~J. and {Bale}, S.~D.},
    title = "{Nearly monochromatic waves in the distant tail of the Earth}",
  journal = {J. Geophys. Res.},
 keywords = {Magnetospheric Physics: Plasma waves and instabilities, Magnetospheric Physics: Magnetotail boundary layers, Magnetospheric Physics: Plasma sheet, Magnetospheric Physics: Magnetotail},
     year = 2004,
    month = apr,
   volume = 109,
    pages = {4223-+},
      doi = {10.1029/2003JA010131},
   adsurl = {http://adsabs.harvard.edu/abs/2004JGRA..10904223K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg06,
   author = {{Kellogg}, P.~J. and {Bale}, S.~D. and {Mozer}, F.~S. and {Horbury}, T.~S. and 
	{Reme}, H.},
    title = "{Solar Wind Electric Fields in the Ion Cyclotron Frequency Range}",
  journal = {Astrophys. J.},
   eprint = {arXiv:physics/0602179},
 keywords = {Sun: Solar Wind},
     year = 2006,
    month = jul,
   volume = 645,
    pages = {704-710},
      doi = {10.1086/499265},
   adsurl = {http://adsabs.harvard.edu/abs/2006ApJ...645..704K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{kellogg08,
   author = {{Kellogg}, P.~J.},
    title = "{Measuring Electric Field and Density Turbulence in the Solar Wind}",
 keywords = {plasma magnetohydrodynamics, plasma turbulence, solar wind, solar flares, astronomical instruments, photoemission, plasma density, astronomical observatories},
booktitle = {American Institute of Physics Conference Series},
     year = 2008,
   series = {American Institute of Physics Conference Series},
   volume = 1039,
    month = aug,
    pages = {87-92},
      doi = {10.1063/1.2982490},
   adsurl = {http://adsabs.harvard.edu/abs/2008AIPC.1039...87K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg09a,
   author = {{Kellogg}, P.~J. and {Cattell}, C.~A. and {Wilson}, III, L.~B.},
    title = "{Whistlers and Electron Trapping in the Earth's Magnetosphere}",
  journal = {Geophysical Research Abstracts, EGU General Assembly},
 keywords = {2159 Plasma waves and turbulence, 7867 Wave/particle interactions (2483, 6984)},
     year = 2009,
   volume = 11,
    month = apr,
    pages = {A13452+}
}

@ARTICLE{kellogg09b,
   author = {{Kellogg}, P.~J. and {Cattell}, C.~A. and {Wilson}, III, L.~B.},
    title = "{Electron Trapping in Large Amplitude Whistlers}",
  journal = {AGU Fall Meeting Abstracts},
 keywords = {7829 kinetic waves and instabilities, 7867 wave-particle interactions},
     year = 2009,
    month = dec,
    pages = {C01+},
   adsurl = {http://adsabs.harvard.edu/abs/2009AGUFMSM51C01W},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg10a,
   author = {{Kellogg}, P.~J. and {Goetz}, K. and {Monson}, S.~J.},
    title = "{Harmonics of langmuir waves in the Earth's foreshock}",
  journal = {J. Geophys. Res.},
 keywords = {Space Plasma Physics: Kinetic waves and instabilities, Space Plasma Physics: Wave/particle interactions (2483, 6984), Space Plasma Physics: General or miscellaneous, Interplanetary Physics: Plasma waves and turbulence},
     year = 2010,
    month = jun,
   volume = 115,
    pages = {6107-+},
      doi = {10.1029/2009JA014635},
   adsurl = {http://adsabs.harvard.edu/abs/2010JGRA..11506107K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kellogg10b,
   author = {{Kellogg}, P.~J. and {Cattell}, C.~A. and {Goetz}, K. and {Monson}, S.~J. and {Wilson} III, L.~B.},
    title = "{Large Amplitude Whistlers in the Magnetosphere Observed with Wind-Waves}",
  journal = {J. Geophys. Res.},
 keywords = {7829 kinetic waves and instabilities, 7867 wave-particle interactions},
     year = 2010,
     note = {submitted}
}

@ARTICLE{kellogg10c,
   author = {{Kellogg}, P.~J. and {Cattell}, C.~A. and {Goetz}, K. and {Monson}, S.~J. and 
	{Wilson}, L.~B.},
    title = "{Electron trapping and charge transport by large amplitude whistlers}",
  journal = {Geophys. Res. Lett.},
 keywords = {Space Plasma Physics: Wave/particle interactions (2483, 6984), Space Plasma Physics: Kinetic waves and instabilities, Magnetospheric Physics: Radiation belts, Radio Science: Magnetospheric physics (2700)},
     year = 2010,
    month = oct,
   volume = 37,
    pages = {20106-+},
      doi = {10.1029/2010GL044845},
   adsurl = {http://adsabs.harvard.edu/abs/2010GeoRL..3720106K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel66,
   author = {{Kennel}, C.~F. and {Petscheck}, H.~E.},
    title = "{Limit on stably trapped particle fluxes}",
  journal = {J. Geophys. Res.},
     year = 1966,
   volume = 71,
    pages = {1-28},
   adsurl = {http://adsabs.harvard.edu/abs/1966JGR....71....1K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel66b,
   author = {{Kennel}, C.~F. and {Engelmann}, F.},
    title = "{Velocity Space Diffusion from Weak Plasma Turbulence in a Magnetic Field}",
  journal = {Phys. Fluids},
     year = 1966,
    month = nov,
   volume = 9,
    pages = {2377-2388},
      doi = {10.1063/1.1761629},
   adsurl = {http://adsabs.harvard.edu/abs/1966PhFl....9.2377K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel67a,
   author = {{Kennel}, C.~F. and {Sagdeev}, R.~Z.},
    title = "{Collisionless shock waves in high beta plasmas, 1}",
  journal = {J. Geophys. Res.},
     year = 1967,
   volume = 72,
    pages = {3303-3326}
}

@ARTICLE{kennel67b,
   author = {{Kennel}, C.~F. and {Sagdeev}, R.~Z.},
    title = "{Collisionless shock waves in high beta plasmas, 2}",
  journal = {J. Geophys. Res.},
     year = 1967,
   volume = 72,
    pages = {3327-3341}
}

@ARTICLE{kennel67c,
   author = {{Kennel}, C.~F. and {Thorne}, R.~M.},
    title = "{Unstable Growth of Unducted Whistlers Propagating at an Angle to the Geomagnetic Field}",
  journal = {J. Geophys. Res.},
     year = 1967,
    month = feb,
   volume = 72,
    pages = {871-+},
      doi = {10.1029/JZ072i003p00871},
   adsurl = {http://adsabs.harvard.edu/abs/1967JGR....72..871K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel68a,
   author = {{Kennel}, C.~F. and {Scarf}, F.~L.},
    title = "{Thermal anisotropies and electromagnetic instabilities in the solar wind}",
  journal = {J. Geophys. Res.},
     year = 1968,
   volume = 73,
    pages = {6149-6165}
}

@INPROCEEDINGS{kennel68b,
   author = {{Kennel}, C.~F. and {Petschek}, H.~E.},
    title = "{Magnetic Turbulence in Shocks}",
booktitle = {Physics of the Magnetosphere},
     year = 1968,
   series = {Astrophysics and Space Science Library},
   volume = 10,
   editor = {{Carovillano}, R.~D.~L. and {McClay}, J.~F.},
    pages = {485-+},
   adsurl = {http://adsabs.harvard.edu/abs/1968ASSL...10..485K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel70a,
   author = {{Kennel}, C.~F. and {Scarf}, F.~L. and {Fredricks}, R.~W. and 
	{McGehee}, J.~H. and {Coroniti}, F.~V.},
    title = "{VLF Electric Field Observations in the Magnetosphere}",
  journal = {J. Geophys. Res.},
     year = 1970,
   volume = 75,
    pages = {6136-6152},
      doi = {10.1029/JA075i031p06136},
   adsurl = {http://adsabs.harvard.edu/abs/1970JGR....75.6136K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel81,
   author = {{Kennel}, C.~F.},
    title = "{Collisionless shocks and upstream waves and particles - Introductory remarks}",
  journal = {J. Geophys. Res.},
 keywords = {COLLISIONLESS PLASMAS, MAGNETOHYDRODYNAMICS, SHOCK WAVES, SOLAR WIND, SPACE PLASMAS, BETA FACTOR, BOW WAVES, INTERPLANETARY MAGNETIC FIELDS, PARTICLE ACCELERATION, SOLAR PROTONS},
     year = 1981,
    month = jun,
   volume = 86,
    pages = {4325-4329},
      doi = {10.1029/JA086iA06p04325},
   adsurl = {http://adsabs.harvard.edu/abs/1981JGR....86.4325K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel82,
   author = {{Kennel}, C.~F. and {Coroniti}, F.~V. and {Scarf}, F.~L. and 
	{Smith}, E.~J. and {Gurnett}, D.~A.},
    title = "{Nonlocal plasma turbulence associated with interplanetary shocks}",
  journal = {J. Geophys. Res.},
 keywords = {INTERPLANETARY SPACE, PLASMA TURBULENCE, PLASMA WAVES, SHOCK WAVE PROPAGATION, ELECTRIC FIELDS, ELECTRON PLASMA, INTERPLANETARY MAGNETIC FIELDS, SOLAR WIND, SPECTRUM ANALYSIS},
     year = 1982,
    month = jan,
   volume = 87,
    pages = {17-34},
      doi = {10.1029/JA087iA01p00017},
   adsurl = {http://adsabs.harvard.edu/abs/1982JGR....87...17K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{kennel84a,
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}

@ARTICLE{kennel84b,
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}

@ARTICLE{kennel85a,
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}

@ARTICLE{kennel86a,
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}

@ARTICLE{kennel86b,
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}

@ARTICLE{kennel87,
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}

@ARTICLE{kennel88,
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@ARTICLE{kucharek04,
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%-----------------------------------------------------------------------------------------
% LLLLLLLLLLLLLL
%-----------------------------------------------------------------------------------------
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}

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@ARTICLE{lembege80b,
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%-----------------------------------------------------------------------------------------
% MMMMMMMMMMMMMM
%-----------------------------------------------------------------------------------------
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}

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}

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}

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}

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}

@ARTICLE{mellott88,
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}

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}

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}

@ARTICLE{meredith99a,
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@ARTICLE{meredith01a,
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@ARTICLE{meredith03a,
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@ARTICLE{meredith03b,
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@ARTICLE{meredith03c,
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}

@ARTICLE{meredith04a,
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@ARTICLE{meredith06a,
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@ARTICLE{meredith07a,
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%-----------------------------------------------------------------------------------------
% NNNNNNNNNNNNNN
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%-----------------------------------------------------------------------------------------
% PPPPPPPPPPPPPP
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% QQQQQQQQQQQQQQ
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% RRRRRRRRRRRRRR
%-----------------------------------------------------------------------------------------
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{robinson93b,
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 keywords = {ELECTROSTATIC WAVES, FLUCTUATION THEORY, SOLAR WIND, STOCHASTIC PROCESSES, TYPE 3 BURSTS, DENSITY DISTRIBUTION, RADIO SOURCES (ASTRONOMY), RANDOM VARIABLES, WAVE PACKETS},
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}

@ARTICLE{roeder87a,
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}

@ARTICLE{roeder89a,
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}

@ARTICLE{romeiras99a,
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}

@ARTICLE{ronnmark78a,
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}

@ARTICLE{ronnmark83a,
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}

@ARTICLE{rosenvinge95,
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@ARTICLE{roth92a,
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}

@ARTICLE{roth99a,
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}

@ARTICLE{roux08a,
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@ARTICLE{ruan09a,
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}

@ARTICLE{russell69a,
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}

@ARTICLE{russell71,
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}

@ARTICLE{russell72a,
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}

@ARTICLE{russell81,
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    title = "{The dependence of upstream wave periods on the interplanetary magnetic field strength}",
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 keywords = {BOW WAVES, GEOMAGNETIC PULSATIONS, INTERPLANETARY MAGNETIC FIELDS, SHOCK WAVES, EARTH MAGNETOSPHERE, FIELD STRENGTH, INTERNATIONAL SUN EARTH EXPLORERS, ION BEAMS, SINE WAVES, UPSTREAM},
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}

@ARTICLE{russell82a,
   author = {{Russell}, C.~T. and {Hoppe}, M.~M. and {Livesey}, W.~A.},
    title = "{Overshoots in planetary bow shocks}",
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}

@ARTICLE{russell82b,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{russell83a,
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    title = "{Upstream waves and particles /Tutorial Lecture/}",
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 keywords = {INTERPLANETARY SPACE, MAGNETOHYDRODYNAMIC WAVES, PARTICLE ACCELERATION, PLASMA WAVES, SHOCK WAVES, SOLAR PLANETARY INTERACTIONS, BOW WAVES, COSMIC RAYS, EXTREMELY LOW RADIO FREQUENCIES, INTERNATIONAL SUN EARTH EXPLORERS, INTERSTELLAR MATTER, MAGNETOHYDRODYNAMIC STABILITY},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{russell83b,
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	{King}, J.~H.},
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 keywords = {BOW WAVES, INTERPLANETARY MAGNETIC FIELDS, INTERPLANETARY SPACE, SHOCK WAVES, SPACEBORNE ASTRONOMY, EXPLORER 50 SATELLITE, INTERNATIONAL SUN EARTH EXPLORERS, MAGNETIC FIELD CONFIGURATIONS, MAGNETIC MEASUREMENT, PROGNOZ SATELLITES},
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      doi = {10.1029/JA088iA06p04739},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{russell83c,
   author = {{Russell}, C.~T. and {Smith}, E.~J. and {Tsurutani}, B.~T. and 
	{Gosling}, J.~T. and {Bame}, S.~J.},
    title = "{Multiple spacecraft observations of interplanetary shocks: Characteristics of the upstream ULF turbulence}",
  journal = {NASA Conference Publication},
 keywords = {COPLANARITY, INTERPLANETARY SPACE, SHOCK WAVES, WAVE PROPAGATION, WHISTLERS, COSMIC RAYS, FLOW VELOCITY, MACH NUMBER, MAGNETIC FIELDS, POWER SPECTRA, TURBULENCE},
     year = 1983,
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}

@ARTICLE{russell83d,
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	{Smith}, E.~J.},
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 keywords = {INTERPLANETARY MAGNETIC FIELDS, MAGNETIC MEASUREMENT, SATELLITE OBSERVATION, SHOCK WAVE PROPAGATION, SOLAR WIND, INTERNATIONAL SUN EARTH EXPLORER 1, INTERNATIONAL SUN EARTH EXPLORER 3, PROPAGATION MODES, PROPAGATION VELOCITY, RANKINE-HUGONIOT RELATION, VECTORS (MATHEMATICS)},
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{russell84,
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    title = "{Multiple spacecraft observations of interplanetary shocks Shock-normal oscillations and their effects}",
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 keywords = {INTERPLANETARY SPACE, PLASMA OSCILLATIONS, SATELLITE OBSERVATION, SHOCK WAVE PROPAGATION, EXPLORER 50 SATELLITE, INTERNATIONAL SUN EARTH EXPLORERS, INTERPLANETARY MAGNETIC FIELDS, PLASMA TURBULENCE},
     year = 1984,
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   adsurl = {http://adsabs.harvard.edu/abs/1984AdSpR...4..277R},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{russell88,
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    title = "{Multipoint measurements of upstream waves}",
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 keywords = {INTERPLANETARY SPACE, SHOCK WAVES, SOLAR WIND, BOW WAVES, EARTH MAGNETOSPHERE, INTERNATIONAL SUN EARTH EXPLORERS, ION DISTRIBUTION, POWER SPECTRA},
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}

@ARTICLE{russell95,
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    title = "{Ultra low frequency waves at the Earth's bow shock}",
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 keywords = {EARTH MAGNETOSPHERE, EXTREMELY LOW FREQUENCIES, INTERSTELLAR MAGNETIC FIELDS, PLASMA WAVES, SHOCK FRONTS, SHOCK WAVES, WHISTLERS, GROUP VELOCITY, LANDAU DAMPING, MAGNETIC FLUX, PLASMA DENSITY, WAVE-PARTICLE INTERACTIONS},
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}

@ARTICLE{russell09a,
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    title = "{STEREO observations of shock formation in the solar wind}",
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}

@ARTICLE{russell09b,
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	{Luhmann}, J.~G.},
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 keywords = {Interplanetary Physics: Corotating streams, Interplanetary Physics: Interplanetary shocks, Interplanetary Physics: MHD waves and turbulence (2752, 6050, 7836), Space Plasma Physics: Shock waves (4455), Space Plasma Physics: Wave/particle interactions (2483, 6984)},
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}

@ARTICLE{rust05a, 
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  journal = {Computing in Science Engineering}, 
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@ARTICLE{rust05b, 
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 keywords = { autoregressive spectral analysis; correlogram estimator; fast Fourier transform; inverse transform; maximum entropy method; periodogram estimator; power spectral density function; spectrum estimation; time series; autoregressive processes; fast Fourier transforms; maximum entropy methods; spectral analysis; time series;}, 
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@ARTICLE{ryu07,
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     year = 2007,
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}
%-----------------------------------------------------------------------------------------
% SSSSSSSSSSSSSS
%-----------------------------------------------------------------------------------------
@ARTICLE{sagdeev66,
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@ARTICLE{sahraoui03a,
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@ARTICLE{saito07,
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     year = 2007,
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@ARTICLE{saito08,
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@ARTICLE{scholer04,
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@INPROCEEDINGS{scholer05,
   author = {{Scholer}, M. and {Matsukiyo}, S.},
    title = "{On Kinetic Structure of Quasi-Perpendicular Collisionless Shocks}",
 keywords = {shock waves, Earth},
booktitle = {The Physics of Collisionless Shocks: 4th Annual IGPP International Astrophysics Conference},
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   series = {American Institute of Physics Conference Series},
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    month = aug,
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  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@ARTICLE{scholer07,
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}

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@ARTICLE{schwartz84a,
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}

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@INPROCEEDINGS{shimada02a,
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booktitle = {8th Asian-Pacific Regional Meeting, Volume II},
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}

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@ARTICLE{sonnerup81,
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}

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@ARTICLE{soucek09a,
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@ARTICLE{spangler09a,
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@ARTICLE{spitzer53,
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@ARTICLE{spitzer63a,
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@ARTICLE{spitzer78a,
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@ARTICLE{starodubtsev99a,
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@ARTICLE{starodubtsev99b,
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@ARTICLE{starodubtsev99c,
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@ARTICLE{starodubtsev99d,
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@ARTICLE{stasiewicz04,
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@ARTICLE{stawarz09a,
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@ARTICLE{stenzel73a,
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@ARTICLE{stepanov07a,
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%-----------------------------------------------------------------------------------------
% TTTTTTTTTTTTTT
%-----------------------------------------------------------------------------------------
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@ARTICLE{thomsen88,
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@ARTICLE{tsurutani09a,
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%-----------------------------------------------------------------------------------------
% UUUUUUUUUUUUUU
%-----------------------------------------------------------------------------------------
@ARTICLE{umeda04a,
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%-----------------------------------------------------------------------------------------
% VVVVVVVVVVVVVV
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% WWWWWWWWWWWWWW
%-----------------------------------------------------------------------------------------
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  journal = {AGU Spring Meeting Abstracts},
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     year = 2008,
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}

@ARTICLE{wilsoniii09a,
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     year = 2009,
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}

@ARTICLE{wilsoniii09b,
   author = {{Wilson III}, L.~B. and {Cattell}, C.~A. and {Kellogg}, P.~J. and 
	{Goetz}, K. and {Kersten}, K. and {Kasper}, J.~C. and {Szabo}, A.},
    title = "{Observational Evidence of Modified Two Stream Instability Driven Waves at an Interplanetary Shock}",
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 keywords = {7851 shock waves, 7829 kinetic waves and instabilities, 7867 wave-particle interactions},
     year = 2009,
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}

@ARTICLE{wilsoniii10a,
   author = {{Wilson III}, L.~B. and {Cattell}, C.~A. and {Kellogg}, P.~J. and 
	{Goetz}, K. and {Kersten}, K. and {Kasper}, J.~C. and {Szabo}, A. and {Wilber}, M.},
    title = "{Large amplitude electrostatic waves observed at a supercritical interplanetary shock}",
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 keywords = {Interplanetary Physics: Interplanetary shocks, Space Plasma Physics: Wave/particle interactions (2483, 6984), Interplanetary Physics: Plasma waves and turbulence, Space Plasma Physics: Plasma energization, Magnetospheric Physics: Plasma waves and instabilities (2471)},
      doi = {10.1029/2010JA015332},
     year = 2010,
     note = {in press}
}

@ARTICLE{wilsoniii10b,
   author = {{Wilson III}, L.~B. and {Cattell}, C.~A. and {Kellogg}, P.~J. and {Wygant}, J.~R and {Goetz}, K. and {Breneman}, A. and {Kersten}, K.},
    title = "{A statistical study of the properties of large amplitude whistler waves and their association with few eV to 30 keV electron distributions observed in the magnetosphere by Wind}",
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 keywords = {2159 Plasma waves and turbulence, 7829 Kinetic waves and instabilities, 7867 Wave/particle interactions (2483, 6984)},
     year = 2010,
     note = {submitted}
}

@ARTICLE{wilsoniii10c,
   author = {{Wilson III}, L.~B. and {Cattell}, C.~A. and {Kellogg}, P.~J. and {Wygant}, J.~R and {Goetz}, K. and {Breneman}, A. and {Kersten}, K.},
    title = "{Characteristics of electron distributions observed during large amplitude whistler wave events in the magnetosphere}",
  journal = {AGU Fall Meeting Abstracts},
 keywords = {2159 Plasma waves and turbulence, 7829 Kinetic waves and instabilities, 7867 Wave/particle interactions (2483, 6984)},
     year = 2010,
    month = dec,
    pages = {SM11B-1703}
}

@ARTICLE{wilsoniii11a,
   author = {{Wilson III}, L.~B. and {Szabo}, A. and {Koval}, A. and {Cattell}, C.~A. and {Kellogg}, P.~J. and {Goetz}, K. and {Breneman}, A. and {Kersten} and {Kasper}, J.~C. and {Pulupa}, M.},
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 keywords = {2159 Plasma waves and turbulence, 7829 Kinetic waves and instabilities, 7867 Wave/particle interactions (2483, 6984)},
     year = 2010,
     note = {in preparation}
}

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}

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%-----------------------------------------------------------------------------------------
% XXXXXXXXXXXXXX
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% YYYYYYYYYYYYYY
%-----------------------------------------------------------------------------------------
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%-----------------------------------------------------------------------------------------
% ZZZZZZZZZZZZZZ
%-----------------------------------------------------------------------------------------
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