English

On the linearity and stability of electrostatic structures based on the Schamel equation

Plasma Physics 2024-11-19 v2

Abstract

This paper contributes in the first part to the correct understanding of the linear limit in the Schamel equation (S-equation) from the perspective of structure formation in collisionless plasmas. The corresponding modes near equilibrium turn out to be nonlinear modes of the underlying microscopic Vlasov-Poisson (VP) system for which particle trapping is responsible. A simple shift of the electrostatic potential to a new pedestal leads to non-negativity and thus mitigates the positivity problem of the S-equation. The stability of a solitary electron hole (bright soliton), based on both the S-equation and an earlier transverse but limited VP instability analysis, exhibits marginal stability and linear perturbations in the form of the asymmetric shift eigenmode of a solvable Schr\"odinger problem. This finding of a dominant shift mode perturbation also seems to have been observed in a numerical PIC simulation, thus providing some confirmation for both theories.

Keywords

Cite

@article{arxiv.2410.17923,
  title  = {On the linearity and stability of electrostatic structures based on the Schamel equation},
  author = {Hans Schamel and Efim Pelinovsky and Marcelo V Flamarion},
  journal= {arXiv preprint arXiv:2410.17923},
  year   = {2024}
}
R2 v1 2026-06-28T19:32:58.154Z