English

Beam-Plasma Dynamics in Finite-Length, Collisionless Inhomogeneous Systems

Plasma Physics 2024-05-07 v2

Abstract

This study investigates the streaming instability triggered by ion motion in a plasma system that is finite in length, collisionless, and inhomogeneous. Employing numerical simulations using Particle-In-Cell (PIC) techniques and kinetic equations, the study examines how inhomogeneity emerges from integrating a cold ion beam with a background plasma within a confined system. The findings suggest that steady ion flow can modify ion sound waves through acoustic reflections from system boundaries, leading to instability. Such phenomena are known to be a hydrodynamic effect. However, there are also signatures of the beam-driven ion sound instability where kinetic resonances play a pivotal role. The main objective is to understand the impact of a finite-length system on beam-plasma instability and to identify the wave modes supported in such configurations.

Keywords

Cite

@article{arxiv.2109.01431,
  title  = {Beam-Plasma Dynamics in Finite-Length, Collisionless Inhomogeneous Systems},
  author = {R. Mishra and R. Moulick and S. Adhikari and S. Marholm and A. J. Eklund and W. J. Miloch},
  journal= {arXiv preprint arXiv:2109.01431},
  year   = {2024}
}

Comments

21 pages, 11 figures

R2 v1 2026-06-24T05:39:27.357Z