Collisionless magnetic reconnection in space plasmas

被引:0
|
作者
Treumann, Rudolf A. [1 ,2 ]
Baumjohann, Wolfgang [3 ]
机构
[1] International Space Science Institute Bern, Bern, Switzerland
[2] Geophysics Department, Munich University, Munich, Germany
[3] Department of Experimental Space Research, Space Research Institute, Austrian Academy of Sciences, Graz, Austria
关键词
Collisionless plasmas - Earth (planet) - Electric fields - Magnetoplasma - Merging - Numerical models;
D O I
10.3389/fphy.2013.00031_old
中图分类号
学科分类号
摘要
Magnetic reconnection, the merging of oppositely directed magnetic fields that leads to field reconfiguration, plasma heating, jetting and acceleration, is one of the most celebrated processes in collisionless plasmas. It requires the violation of the frozen-in condition which ties gyrating charged particles to the magnetic field inhibiting diffusion. Ongoing reconnection has been identified in near-Earth space as being responsible for the excitation of substorms, magnetic storms, generation of field aligned currents and their consequences, the wealth of auroral phenomena. Its theoretical understanding is now on the verge of being completed. Reconnection takes place in thin current sheets. Analytical concepts proceeded gradually down to the microscopic scale, the scale of the electron skin depth or inertial length, recognizing that current layers that thin do preferentially undergo spontaneous reconnection. Thick current layers start reconnecting when being forced by plasma inflow to thin. For almost half a century the physical mechanism of reconnection has remained a mystery. Spacecraft in situ observations in combination with sophisticated numerical simulations in two and three dimensions recently clarified the mist, finding that reconnection produces a specific structure of the current layer inside the electron inertial (also called electron diffusion) region around the reconnection site, the X line. Onset of reconnection is attributed to pseudo-viscous contributions of the electron pressure tensor aided by electron inertia and drag, creating a complicated structured electron current sheet, electric fields, and an electron exhaust extended along the current layer. We review the general background theory and recent developments in numerical simulation on collisionless reconnection. It is impossible to cover the entire field of reconnection in a short space-limited review. The presentation necessarily remains cursory, determined by our taste, preferences, and knowledge. Only a small amount of observations is included in order to support the few selected numerical simulations. © 2013 Treumann and Baumjohann.
引用
收藏
相关论文
共 50 条
  • [1] Collisionless magnetic reconnection in space plasmas
    Treumann, Rudolf A.
    Baumjohann, Wolfgang
    FRONTIERS IN PHYSICS, 2013, 1
  • [2] MAGNETIC RECONNECTION IN COLLISIONLESS PLASMAS
    COPPI, B
    MARK, JWK
    SUGIYAMA, L
    ANNALS OF PHYSICS, 1979, 119 (02) : 370 - 404
  • [3] MAGNETIC RECONNECTION IN COLLISIONLESS PLASMAS - PRESCRIBED FIELDS
    BURKHART, GR
    DRAKE, JF
    CHEN, J
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1990, 95 (A11) : 18833 - 18848
  • [4] NEW REGIMES OF MAGNETIC RECONNECTION IN COLLISIONLESS PLASMAS
    HEWETT, DW
    FRANCES, GE
    MAX, CE
    PHYSICAL REVIEW LETTERS, 1988, 61 (07) : 893 - 896
  • [5] Impulsive reconnection dynamics in collisionless laboratory and space plasmas
    Bhattacharjee, A
    Ma, ZW
    Wang, XG
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1999, 104 (A7) : 14543 - 14556
  • [6] Collisionless reconnection of magnetic field lines in dusty plasmas
    Jovanovic, D
    Shukla, PK
    PHYSICS OF PLASMAS, 2002, 9 (10) : 4127 - 4134
  • [7] Influence of asymmetries and guide fields on the magnetic reconnection diffusion region in collisionless space plasmas
    Eastwood, J. P.
    Phan, T. D.
    Oieroset, M.
    Shay, M. A.
    Malakit, K.
    Swisdak, M.
    Drake, J. F.
    Masters, A.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2013, 55 (12)
  • [8] Scaling of Magnetic Reconnection in Relativistic Collisionless Pair Plasmas
    Liu, Yi-Hsin
    Guo, Fan
    Daughton, William
    Li, Hui
    Hesse, Michael
    PHYSICAL REVIEW LETTERS, 2015, 114 (09)
  • [9] The link between shocks, turbulence, and magnetic reconnection in collisionless plasmas
    Karimabadi, H.
    Roytershteyn, V.
    Vu, H. X.
    Omelchenko, Y. A.
    Scudder, J.
    Daughton, W.
    Dimmock, A.
    Nykyri, K.
    Wan, M.
    Sibeck, D.
    Tatineni, M.
    Majumdar, A.
    Loring, B.
    Geveci, B.
    PHYSICS OF PLASMAS, 2014, 21 (06)
  • [10] On the ions acceleration via collisionless magnetic reconnection in laboratory plasmas
    Cazzola, E.
    Curreli, D.
    Markidis, S.
    Lapenta, G.
    PHYSICS OF PLASMAS, 2016, 23 (11)