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Field‐error induced transport in a pure electron plasma column

The long confinement times achieved in experiments on pure electron plasmas are explainable in terms of the conservation of canonical angular momentum in azimuthally symmetic systems. A low‐density, pure electron plasma is considered, and the effect of disrupting the system’s symmetry by introducing...

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Published in:The Physics of fluids (1958) 1984-06, Vol.27 (6), p.1427-1433
Main Author: Keinigs, Rhon
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Language:English
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description The long confinement times achieved in experiments on pure electron plasmas are explainable in terms of the conservation of canonical angular momentum in azimuthally symmetic systems. A low‐density, pure electron plasma is considered, and the effect of disrupting the system’s symmetry by introducing a small, magnetic field error is investigated. It is found that this external perturbation can resonantly drive low‐frequency waves that couple back to the field error and produce a change in the plasma’s angular momentum. This results in changing the radius of the column.
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subjects Exact sciences and technology
Physics
Physics of gases, plasmas and electric discharges
Physics of plasmas and electric discharges
Plasma properties
title Field‐error induced transport in a pure electron plasma column
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