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碰撞等离子体中的静电涨落。

Electrostatic fluctuations in collisional plasmas.

机构信息

Theoretical Physics Institute, Department of Physics, University of Alberta, Edmonton, Alberta, Canada T6G 2E1.

P.N. Lebedev Physics Institute, Russian Academy of Sciences, Moscow 117924, Russia.

出版信息

Phys Rev E. 2017 Oct;96(4-1):043207. doi: 10.1103/PhysRevE.96.043207. Epub 2017 Oct 12.

Abstract

We present a theory of electrostatic fluctuations in two-component plasmas where electrons and ions are described by Maxwellian distribution functions at unequal temperatures. Based on the exact solution of the Landau kinetic equation, that includes electron-electron, electron-ion, and ion-ion collision integrals, the dynamic form factor, S(k[over ⃗],ω), is derived for weakly coupled plasmas. The collective plasma responses at ion-acoustic, Langmuir, and entropy mode resonances are described for arbitrary wave numbers and frequencies in the entire range of plasma collisionality. The collisionless limit of S(k[over ⃗],ω) and the strong-collision result based on the fluctuation-dissipation theorem and classical transport at T_{e}=T_{i} are recovered and discussed. Results of several Thomson scattering experiments in the broad range of plasma parameters are described and discussed by means of our theory for S(k[over ⃗],ω).

摘要

我们提出了一种双组分等离子体中静电涨落的理论,其中电子和离子由不等温度下的麦克斯韦分布函数描述。基于包含电子-电子、电子-离子和离子-离子碰撞积分的朗道动理学方程的精确解,推导出了弱耦合等离子体的动态形式因子 S(k[over ⃗],ω)。描述了任意波数和频率在整个等离子体碰撞范围内的离子声波、朗缪尔和熵模式共振的集体等离子体响应。恢复并讨论了 S(k[over ⃗],ω) 的无碰撞极限和基于涨落耗散定理和 T_{e}=T_{i} 时经典输运的强碰撞结果。通过我们的理论,描述和讨论了在广泛等离子体参数范围内的几个汤姆逊散射实验结果。

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