Dielectric and optical properties of dense plasmas

H. Reinholz
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引用次数: 46

Abstract

The interaction of matter with radiation concerns almost every area in physics. The exposure of matter to radiation may change its behavior. The focus of the present review are strongly correlated Coulomb systems under the influence of electromagnetic fields. Within linear response, the dynamical and non local (frequency and wave vector dependent) dielectric function and related quantities such as the polarization function and the response function, are expressed via equilibrium correlation functions. In particular, relations for the dynamical conductivity, the dynamical local field factor, the dynamical collision frequency and the dynamical structure factor are given with respect to current-current correlation functions and force-force correlation functions. Instead of a simple Drude formula which introduces a relaxation time in a semi-empiric way, a systematic quantum statistical approach is given which is able to describe the dynamical behavior of the collision frequency. The evaluation of correlation functions is performed within a systematic quantum statistical approach and compared to molecular dynamics simulations. The results obtained are of interest with respect to the production of radiation, the excitation of matter in electromagnetic fields, the diagnostics of matter etc. Applications to the dynamical conductivity, Bremsstrahlung, Thomson scattering and optical reflectivity are discussed.
致密等离子体的介电和光学特性
物质与辐射的相互作用几乎涉及物理学的每一个领域。物质受到辐射可能会改变其行为。本文的研究重点是电磁场作用下的强相关库仑系统。在线性响应中,动态和非局部(频率和波矢量依赖)介电函数和相关量,如极化函数和响应函数,通过平衡相关函数表示。特别给出了动态电导率、动态局部场因子、动态碰撞频率和动态结构因子在电流-电流相关函数和力-力相关函数中的关系。本文给出了一种系统的量子统计方法来描述碰撞频率的动力学行为,而不是简单的以半经验方式引入弛豫时间的德鲁德公式。相关函数的评估是在系统的量子统计方法中进行的,并与分子动力学模拟进行了比较。所得结果对辐射的产生、电磁场中物质的激发、物质的诊断等方面都有意义。讨论了在动态电导率、轫致辐射、汤姆逊散射和光反射率等方面的应用。
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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来源期刊
Annales De Physique
Annales De Physique 物理-物理:综合
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