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Journal of Geophysical Research: Space Physics, ISSN 2169-9380, 02/2017, Volume 122, Issue 2, pp. 2001 - 2009
The evolution of the whistler anisotropy instability relevant to whistler‐mode chorus waves in the Earth's inner magnetosphere is studied using kinetic simulations and is compared with satellite observations... 
electron beta | electron anisotropy | Whistler anisotropy instability | Whistler‐mode chorus waves | Whistler-mode chorus waves | HISS | GENERATION | TURBULENCE | ASTRONOMY & ASTROPHYSICS | BANDED CHORUS | Magnetism | Simulation | Anisotropy | Geophysics | Satellites | Magnetosphere | Landau damping | Upper bounds | Satellite observation | Instability | Magnetospheres | Whistlers | ASTRONOMY AND ASTROPHYSICS
Journal Article
The Astrophysical journal, ISSN 1538-4357, 2019, Volume 882, Issue 2, p. 81
Journal Article
Journal of geophysical research. Space physics, ISSN 2169-9380, 2016, Volume 121, Issue 6, pp. 5350 - 5365
Journal Article
Journal of plasma physics, ISSN 0022-3778, 08/2018, Volume 84, Issue 4
Journal Article
Journal of geophysical research. Space physics, ISSN 2169-9402, 2017, Volume 122, Issue 1, pp. 748 - 752
...; however, no such conclusion is in our paper. In fact, as stated in their paper, we agree with their theory that shows the impact of heavy ions and electron temperature anisotropy on the competition of the ion anisotropy instabilities... 
mirror instability | electron temperature anisotropy | electron whistler instability | SOLAR-WIND | WAVES | PLASMA | SIMULATION | MAGNETOSHEATH | ASTRONOMY & ASTROPHYSICS | Temperature | Magnetic fields | Anisotropy | Geophysics | Electrons | Competition | Heavy ions | Whistler instability | Stability | Computer simulation | Magnetosheath | Dominance | Ions | Cyclotrons | Simulation | Heating | Evolution | Instability | Nonlinearity | Particle in cell technique | Electron energy | ASTRONOMY AND ASTROPHYSICS
Journal Article
Journal of Geophysical Research: Space Physics, ISSN 2169-9380, 03/2014, Volume 119, Issue 3, pp. 1429 - 1434
A three‐dimensional (3‐D) particle‐in‐cell (PIC) simulation of the whistler anisotropy instability is carried out for a collisionless, homogeneous, magnetized plasma with βe=0.10... 
particle‐in‐cell simulation | whistler | anisotropy | instability | particle-in-cell simulation | WAVES | ASTRONOMY & ASTROPHYSICS | TURBULENCE | Magnetic fields | Anisotropy | Geophysics
Journal Article
Astrophysical journal. Letters, ISSN 2041-8213, 2019, Volume 882, Issue 1, p. L8
In collision-poor plasmas from space, e.g., solar wind or stellar outflows, the heat flux carried by the strahl or beaming electrons is expected to be regulated by the self-generated instabilities... 
Stellar winds | Turbulence | Temperature | Fluctuations | Numerical simulations | Turbulent flow | Stability | Computer simulation | Temperature gradients | Heat flux | Whistlers | Heat | Electron beams | Simulation | Skew angle | Instability | Pitch (inclination) | Plasmas | Particle in cell technique | Small-scale turbulence | Electron energy | Solar wind | Heat transfer | waves | plasmas | methods: numerical | instabilities | solar wind | interplanetary medium
Journal Article
Physics of Plasmas, ISSN 1070-664X, 06/2010, Volume 17, Issue 6, pp. 062112 - 062112-5
Journal Article
Journal of geophysical research. Space physics, ISSN 2169-9402, 2017, Volume 122, Issue 1, pp. 745 - 747
Journal Article
Journal of geophysical research. Space physics, ISSN 2169-9380, 2014, Volume 119, Issue 10, pp. 8288 - 8298
...‐dimensional particle‐in‐cell simulations in a magnetized, homogeneous, collisionless plasma to test the hypothesis that banded chorus is due to local linear growth of two branches of the whistler anisotropy instability... 
particle‐in‐cell simulation | chorus | HOPE | Van Allen Probes | particle-in-cell simulation | ACCELERATION | WAVES | RADIATION-BELT ELECTRONS | EMISSIONS | ASTRONOMY & ASTROPHYSICS | MAGNETOSPHERIC CHORUS | Anisotropy | Geophysics | Satellites | Simulation | Space probes | Band theory | Instability | Particle in cell technique | Whistlers | GEOSCIENCES
Journal Article
The Astrophysical journal, ISSN 1538-4357, 2016, Volume 824, Issue 2, pp. 123 - 123
Journal Article
Astrophysical Journal, ISSN 0004-637X, 12/2017, Volume 850, Issue 2, p. 113
Journal Article
Astrophysical Journal Letters, ISSN 2041-8205, 09/2015, Volume 811, Issue 1, pp. L7 - 5
Journal Article
Space science reviews, ISSN 1572-9672, 2019, Volume 215, Issue 4, pp. 1 - 95
...}$; in this case it begins as an ideal-MHD instability followed by the generation of bursty bulk flows and dipolarization... 
Magnetic reconnection | Auroral beads/rays | Astrophysics and Astroparticles | Plasma micro-instabilities | Ballooning/interchange instability | B z $B_{z}$ hump | Space Sciences (including Extraterrestrial Physics, Space Exploration and Astronautics) | Particle acceleration | Aerospace Technology and Astronautics | Supra-arcade downflows | Physics | Flux tube oscillations | Flapping motions | Magnetotail | Planetology | Tearing instability | Dipolarization fronts | Current sheet thinning | Bursty bulk flows | Laboratory reconnection experiments | HYBRID-DRIFT INSTABILITY | hump | TAIL CURRENT SHEET | Ballooning | DAWN-DUSK ASYMMETRIES | BIFURCATED CURRENT SHEET | interchange instability | ASTRONOMY & ASTROPHYSICS | Auroral beads | ELECTROMAGNETIC ENERGY-CONVERSION | MAGNETIC-FLUX DEPLETION | OSCILLATORY FLOW BRAKING | rays | KINETIC BALLOONING/INTERCHANGE INSTABILITY | THIN CURRENT SHEETS | EARTH PLASMA SHEET | Magnetic fields | Analysis | Magnetic flux | Solar corona | Fluctuations | Stability | Fronts | Plasma acceleration | Remote sensing | Earth | Energy dissipation | Heating | Whistler waves | Instability | Corona | Solar wind | Ionosphere | Flapping | Plasma waves | Sheets | Bz hump | ASTRONOMY AND ASTROPHYSICS | documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$B_{z}$\end{document}Bz hump
Journal Article