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碰撞等离子体的动力学磁化率与输运理论

Kinetic susceptibility and transport theory of collisional plasmas.

作者信息

Brantov A V, Bychenkov V Yu, Rozmus W, Capjack C E

机构信息

Department of Physics, University of Alberta, Edmonton T6G 2J1, Alberta, Canada

出版信息

Phys Rev Lett. 2004 Sep 17;93(12):125002. doi: 10.1103/PhysRevLett.93.125002. Epub 2004 Sep 15.

Abstract

A system of nonlocal electron transport equations for electrostatic perturbations in (omega,k) space in a high-Z plasma is derived from the Fokker-Planck equation for arbitrary relations between the time, space, and collisionality scales. The closed scheme for obtaining the longitudinal plasma susceptibility epsilon(omega,k) in the entire (omega,k) plane is proposed. Regions in the (omega,k) plane have been mapped for problems such as the relaxation of the local temperature enhancement with a time-dependent heat conductivity. The electron dielectric permittivity has been calculated over the entire range of parameters, including the transition region between Vlasov and Fokker-Planck equation solutions.

摘要

针对高Z等离子体中(ω,k)空间内静电扰动的非局部电子输运方程组,由福克 - 普朗克方程推导得出,适用于时间、空间和碰撞性尺度之间的任意关系。提出了在整个(ω,k)平面内获取纵向等离子体磁化率ε(ω,k)的封闭方案。已绘制出(ω,k)平面中的区域,用于解决诸如随时间变化的热导率导致的局部温度增强弛豫等问题。已在包括弗拉索夫方程和福克 - 普朗克方程解之间的过渡区域在内的整个参数范围内计算了电子介电常数。

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