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Ellison & Jones 1988
Ellison, D.C. and Jones, F.C. (1988). A description of electron heating with an electrostatic potential jump in a parallel, collisionless, fire hose shock. Journal of Geophysical Research 93: doi: 10.1029/88JA01238. issn: 0148-0227.

We calculate the electron heating required if protons scatter elastically in a parallel, collisionless shock. Near elastic proton scattering off large amplitude background magnetic field fluctuations might be expected if the waves responsible for the shock dissipation are generated by the fire hose instability. The effects of an electrostatic potential jump in the shock layer are included by assuming that the energy lost by protons in traversing the potential jump is converted into electron thermal pressure. It is found that the electron temperature increase is a strong function of the potential jump. Comparison is made to the parallel shock plasma simulation of Quest (1987). ¿ American Geophysical Union 1988

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Abstract

Keywords
Space Plasma Physics, Shock waves, Solar Physics, Astrophysics, and Astronomy, Energetic particles, Space Plasma Physics, Charged particle motion and acceleration, Space Plasma Physics, Electrostatic structures
Journal
Journal of Geophysical Research
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Publisher
American Geophysical Union
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