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Scaling of Spoke Rotation Frequency within a Penning Discharge

Plasma Physics 2018-08-01 v1

Abstract

A rotating plasma spoke is shown to develop in two-dimensional full-sized kinetic simulations of a Penning discharge cross-section. Electron cross-field transport within the discharge is highly anomalous and correlates strongly with the spoke phase. Similarity between collisional and collisionless simulations demonstrates that ionization is not necessary for spoke formation. Parameter scans with discharge current IdI_d, applied magnetic field strength BB and ion mass mim_i show that spoke frequency scales with eErLn/mi\sqrt{e E_r L_n / m_i}, where ErE_r is the radial electric field, LnL_n is the gradient length scale and ee is the fundamental charge. This scaling suggests that the spoke may develop as a non-linear phase of the collisionless Simon-Hoh instability.

Keywords

Cite

@article{arxiv.1805.04438,
  title  = {Scaling of Spoke Rotation Frequency within a Penning Discharge},
  author = {Andrew T. Powis and Johan A. Carlsson and Igor D. Kaganovich and Yevgeny Raitses and Andrei Smolyakov},
  journal= {arXiv preprint arXiv:1805.04438},
  year   = {2018}
}