Instabilities for a relativistic electron beam interacting with a laser irradiated plasma
Hrachya B. Nersisyan, Claude Deutsch

TL;DR
This paper investigates how a radiation field influences instabilities in a relativistic electron beam interacting with plasma, revealing mode coupling, spectrum splitting, and conditions for maximum growth rates.
Contribution
It provides analytical and numerical analysis of RF effects on beam-plasma instabilities, highlighting mode coupling and spectrum splitting under different polarization configurations.
Findings
Largest growth rates occur when RF polarization is perpendicular to wave vector.
Spectrum of unstable modes splits into long and short wavelength domains.
Unstable mode growth rates depend on beam and RF parameters, varying with polarization geometry.
Abstract
The effects of a radiation field (RF) on the unstable modes developed in relativistic electron beam--plasma interaction are investigated assuming that , where is the frequency of the RF and is the plasma frequency. These unstable modes are parametrically coupled to each other due to the RF and are a mix between two--stream and parametric instabilities. The dispersion equations are derived by the linearization of the kinetic equations for a beam--plasma system as well as the Maxwell equations. In order to highlight the effect of the radiation field we present a comparison of our analytical and numerical results obtained for nonzero RF with those for vanishing RF. Assuming that the drift velocity of the beam is parallel to the wave vector of the excitations two particular transversal and parallel…
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Taxonomy
TopicsMagnetic confinement fusion research · Laser-Plasma Interactions and Diagnostics · Dust and Plasma Wave Phenomena
