王正汹

个人信息Personal Information

教授

博士生导师

硕士生导师

主要任职:物理学院院长、党委副书记

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:物理学院

学科:等离子体物理

办公地点:物理楼402办公室

联系方式:86-411-84708983

电子邮箱:zxwang@dlut.edu.cn

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Kinetic Alfven waves in three-dimensional magnetic reconnection

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论文类型:期刊论文

发表时间:2016-07-01

发表刊物:JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS

收录刊物:SCIE

卷号:121

期号:7

页面范围:6526-6548

ISSN号:2169-9380

关键字:magnetic reconnection; Alfven waves; kinetic Alfven waves; hybrid simulation; magnetotail; guide field

摘要:Alfvenic waves are believed to be fundamentally important in magnetic reconnection. Kinetic dynamics of particles can break the Alfven speed limit in the evolution and propagation of perturbations during reconnection. In this paper, the generation and signatures of kinetic Alfven waves (KAWs) associated with magnetic reconnection in a current sheet is investigated using a three-dimensional (3-D) hybrid code under a zero or finite guide field. In order to understand the wave structures in the general cases of multiple X line reconnection, cases with a single X line of various lengths are examined. The KAWs are identified using the wave dispersion relation, electromagnetic polarization relations, as well as spectral analysis. In the cases in which the X line is so long to extend through the entire simulation domain in the current direction, quasi 2-D configurations of reconnection are developed behind a leading flux/plasma bulge. KAWs with perpendicular wave number k(i)approximate to 1 (with (i) being the ion Larmor radius) are found throughout the transient plasma bulge region and propagate outward along magnetic field lines with a slightly super-Alfvenic velocity. These KAWs are generated from the X line and coexist with the whistler structure of the ion diffusion region under a small guide field. In the cases in which the X line has a finite length 2 approximate to 10d(i), with being the half length of the X line and d(i) the ion inertial length, the KAWs originated from the X line are of 3-D nature. Under a finite guide field, KAWs propagate along the oblique magnetic field lines into the unperturbed regions in the current direction, carrying parallel electric field and Poynting fluxes. The critical X line length for the generation of 3-D-like structures is found to be 2(c)30d(i). The structure, propagation, energy, spectrum, and damping of the KAWs are examined. Dependence of the structure of KAWs on the guide field is also investigated.