An improved method to derive the kappa distribution in polytropic plasmas

Fuente: arXiv
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Auteur principal: Guo, Ran
Format: Preprint
Publié: 2020
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author Guo, Ran
author_facet Guo, Ran
contents This paper studies sufficient conditions for deriving the kappa distribution in polytropic plasmas by an improved method compared with the previous work [R. Guo, Phys. Plasmas \textbf{27}, 122104 (2020)]. We find that the polytropic equation of state can lead to the kappa distribution without any other assumptions in one dimension. In higher dimensions, an extra assumption that the global distribution must only depend on the energy is still needed. In addition, the self-consistence of the electrostatic potential is investigated in such plasmas. The study implies that in single-component plasmas, the potential is constrained by the Lane-Emden equation. However, in two-component plasmas, any arbitrary potential could exist with a suitable background ion density. Finally, we discuss the connections between the kappa distribution and the polytrope.
format Preprint
id arxiv_https___arxiv_org_abs_2011_05124
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle An improved method to derive the kappa distribution in polytropic plasmas
Guo, Ran
Plasma Physics
Statistical Mechanics
This paper studies sufficient conditions for deriving the kappa distribution in polytropic plasmas by an improved method compared with the previous work [R. Guo, Phys. Plasmas \textbf{27}, 122104 (2020)]. We find that the polytropic equation of state can lead to the kappa distribution without any other assumptions in one dimension. In higher dimensions, an extra assumption that the global distribution must only depend on the energy is still needed. In addition, the self-consistence of the electrostatic potential is investigated in such plasmas. The study implies that in single-component plasmas, the potential is constrained by the Lane-Emden equation. However, in two-component plasmas, any arbitrary potential could exist with a suitable background ion density. Finally, we discuss the connections between the kappa distribution and the polytrope.
title An improved method to derive the kappa distribution in polytropic plasmas
topic Plasma Physics
Statistical Mechanics
url https://arxiv.org/abs/2011.05124