English

Plasma walls beyond the perfect absorber approximation for electrons

Plasma Physics 2015-05-19 v2 Other Condensed Matter

Abstract

Plasma walls accumulate electrons more efficiently than ions leading to wall potentials which are negative with respect to the plasma potential. Theoretically, walls are usually treated as perfect absorber for electrons and ions implying perfect sticking of the particles to the wall and infinitely long desorption times for particles stuck to the wall. For electrons we question the perfect absorber model and calculate, specifically for a planar dielectric wall, the electron sticking coefficient ses_e and the electron desorption time τe\tau_e. For the uncharged wall we find se1s_e\ll 1 and τe104s\tau_e\approx 10^{-4}s. Thus, in the early stage of the build-up of the wall potential, when the wall is essentially uncharged, the wall is not a perfect absorber for electrons. For the charged wall we find τe10\tau_e^{-1}\approx 0. Thus, τe\tau_e approaches the perfect absorber value. But ses_e is still only of the order of 10110^{-1}. Calculating ses_e as a function of the wall potential and combining this expression with the quasi-stationary balance equations for the electron and ion surface densities we find the selfconsistent wall potential, including surface effects, to be 30% of the perfect absorber value.

Keywords

Cite

@article{arxiv.1009.2897,
  title  = {Plasma walls beyond the perfect absorber approximation for electrons},
  author = {Franz X. Bronold and Rafael L. Heinisch and Johannes Marbach and Holger Fehske},
  journal= {arXiv preprint arXiv:1009.2897},
  year   = {2015}
}

Comments

8 pages, 5 figures, published version

R2 v1 2026-06-21T16:14:11.655Z