Birefringence in thermally anisotropic relativistic plasmas and its impact on laser–plasma interactions

A. Arefiev, D. Stark, T. Toncian, M. Murakami
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引用次数: 5

Abstract

One of the paradigm-shifting phenomena triggered in laser-plasma interactions at relativistic intensities is the so-called relativistic transparency. As the electrons become heated by the laser to relativistic energies, the plasma becomes transparent to the laser light even though the plasma density is sufficiently high to reflect the laser pulse in the non-relativistic case. This paper highlights the impact that relativistic transparency can have on laser-matter interactions by focusing on a collective phenomenon that is associated with the onset of relativistic transparency: plasma birefringence in thermally anisotropic relativistic plasmas. The optical properties of such a system become dependent on the polarization of light, and this can serve as the basis for plasma-based optical devices or novel diagnostic capabilities.
热各向异性相对论等离子体中的双折射及其对激光等离子体相互作用的影响
在相对论强度的激光等离子体相互作用中引发的范式转移现象之一是所谓的相对论透明性。当电子被激光加热到相对论能量时,等离子体对激光变得透明,即使等离子体密度足够高,在非相对论情况下可以反射激光脉冲。本文通过关注与相对论性透明度开始相关的集体现象:热各向异性相对论性等离子体中的等离子体双折射,强调了相对论性透明度对激光-物质相互作用的影响。这种系统的光学特性依赖于光的偏振,这可以作为基于等离子体的光学设备或新型诊断能力的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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