Tearing mode analysis in electron magnetohydrodynamics with pressure gradient

A two-dimensional three-component (2D/3C) electron magnetohydrodynamic (EMHD) model is implemented to investigate the linear behavior of collisionless tearing modes in slab geometry. Owing to nonuniformity of thermal pressure and plasma density, the electron diamagnetic drift and Biermann battery ef...

Full description

Bibliographic Details
Main Authors: Wenping Guo, Dongjian Liu, Xiaogang Wang, Jiaqi Wang
Format: Article
Language:English
Published: AIP Publishing LLC 2020-10-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0022332
_version_ 1828267131256438784
author Wenping Guo
Dongjian Liu
Xiaogang Wang
Jiaqi Wang
author_facet Wenping Guo
Dongjian Liu
Xiaogang Wang
Jiaqi Wang
author_sort Wenping Guo
collection DOAJ
description A two-dimensional three-component (2D/3C) electron magnetohydrodynamic (EMHD) model is implemented to investigate the linear behavior of collisionless tearing modes in slab geometry. Owing to nonuniformity of thermal pressure and plasma density, the electron diamagnetic drift and Biermann battery effects are involved. The linear structures, growth rate, and real frequency are analyzed with a thin current sheet in the electron inertia scale. The ratio of the electron current to the total current in equilibrium can notably promote the growth of the tearing mode in EMHD. More numerical results then show that the effect of the pressure gradient on the tearing mode is dependent on the plasma beta, stabilizing the mode in a low enough beta limit but destabilizing it with the higher beta. The frequency of the mode caused by the pressure gradient is found to be increasing with it. The Biermann battery effect slightly stabilizes the tearing mode in low beta plasma but is indicated to be significant in much higher beta conditions.
first_indexed 2024-04-13T05:00:36Z
format Article
id doaj.art-4f7f21308bef46a0a01faaddac1c8084
institution Directory Open Access Journal
issn 2158-3226
language English
last_indexed 2024-04-13T05:00:36Z
publishDate 2020-10-01
publisher AIP Publishing LLC
record_format Article
series AIP Advances
spelling doaj.art-4f7f21308bef46a0a01faaddac1c80842022-12-22T03:01:20ZengAIP Publishing LLCAIP Advances2158-32262020-10-011010105207105207-1110.1063/5.0022332Tearing mode analysis in electron magnetohydrodynamics with pressure gradientWenping Guo0Dongjian Liu1Xiaogang Wang2Jiaqi Wang3College of Physics, Sichuan University, Chengdu 610065, ChinaCollege of Physics, Sichuan University, Chengdu 610065, ChinaSchool of Physics, Harbin Institute of Technology, Harbin 150001, ChinaCollege of Physics, Sichuan University, Chengdu 610065, ChinaA two-dimensional three-component (2D/3C) electron magnetohydrodynamic (EMHD) model is implemented to investigate the linear behavior of collisionless tearing modes in slab geometry. Owing to nonuniformity of thermal pressure and plasma density, the electron diamagnetic drift and Biermann battery effects are involved. The linear structures, growth rate, and real frequency are analyzed with a thin current sheet in the electron inertia scale. The ratio of the electron current to the total current in equilibrium can notably promote the growth of the tearing mode in EMHD. More numerical results then show that the effect of the pressure gradient on the tearing mode is dependent on the plasma beta, stabilizing the mode in a low enough beta limit but destabilizing it with the higher beta. The frequency of the mode caused by the pressure gradient is found to be increasing with it. The Biermann battery effect slightly stabilizes the tearing mode in low beta plasma but is indicated to be significant in much higher beta conditions.http://dx.doi.org/10.1063/5.0022332
spellingShingle Wenping Guo
Dongjian Liu
Xiaogang Wang
Jiaqi Wang
Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
AIP Advances
title Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
title_full Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
title_fullStr Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
title_full_unstemmed Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
title_short Tearing mode analysis in electron magnetohydrodynamics with pressure gradient
title_sort tearing mode analysis in electron magnetohydrodynamics with pressure gradient
url http://dx.doi.org/10.1063/5.0022332
work_keys_str_mv AT wenpingguo tearingmodeanalysisinelectronmagnetohydrodynamicswithpressuregradient
AT dongjianliu tearingmodeanalysisinelectronmagnetohydrodynamicswithpressuregradient
AT xiaogangwang tearingmodeanalysisinelectronmagnetohydrodynamicswithpressuregradient
AT jiaqiwang tearingmodeanalysisinelectronmagnetohydrodynamicswithpressuregradient