Control of a Uniformly Magnetized Plasma with External Electric Fields
Abstract
Stabilizing plasma dynamics through externally applied electric and magnetic fields is a fundamental control problem. We study this question for a plasma evolving under a uniform external magnetic field. Although the governing dynamics are nonlinear, a linear analysis based on the Laplace-Fourier transform yields actionable insight. In particular, by controlling the location of the roots of the dispersion relation, we propose a general control strategy that restores stability, with the free-streaming solution recovered as a special case. Numerical experiments for Gaussian equilibria and for the Dory-Guest-Harris instability show that the proposed control suppresses the unstable modes and stabilizes the dynamics, in agreement with our theoretical predictions.
Keywords
Cite
@article{arxiv.2509.07988,
title = {Control of a Uniformly Magnetized Plasma with External Electric Fields},
author = {Peiyi Chen and Rogerio Jorge and Qin Li and Yukun Yue},
journal= {arXiv preprint arXiv:2509.07988},
year = {2026}
}
Comments
29 pages, 17 figures