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Miller & Khazanov 1993
Miller, R.H. and Khazanov, G.V. (1993). Self-consistent electrostatic potential due to trapped plasma in the magnetosphere. Geophysical Research Letters 20: doi: 10.1029/93GL01251. issn: 0094-8276.

A steady state solution for the self-consistent electrostatic potential due to a plasma confined in a magnetic flux tube is considered. A steady state distribution function is constructed for the trapped particles from the constants of the motion, in the absence of waves and collisions. Using Liouville's theorem, the particle density along the geomagnetic field is determined and found to depend on the local magnetic field, self-consistent electric potential, and the equatorial plasma distribution function. A hot anisotropic magnetospheric plasma in steady state is modeled by a bi-Maxwellian at the equator. The self-consistent electric potential along the magnetic field is calculated assuming quasineutrality, and the potential drop is found to be approximately equal to the average kinetic energy of the equatorially trapped plasma. The potential is compared with that obtained by Alfv¿n and F¿lthammar [1963>. ¿ American Geophysical Union 1993

BACKGROUND DATA FILES

Abstract

Keywords
Magnetospheric Physics, Electric fields, Magnetospheric Physics, Energetic particles, trapped, Space Plasma Physics, Charged particle motion and acceleration, Space Plasma Physics, Electrostatic structures
Journal
Geophysical Research Letters
http://www.agu.org/journals/gl/
Publisher
American Geophysical Union
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