Dynamic Behavior and Topology of 3D Magnetic Fields

  • K. Galsgaard
  • Å. Nordlund

Abstract

We investigate numerically the dynamical evolution of a boundary driven, topologically complex low ß plasma. The initial state is a simple, but topologically nontrivial 3D magnetic field, and the evolution is driven by forced motions on two opposite boundaries of the computational domain. A large X-type reconnection event with a supersonic one-sided jet occurs as part of a process that brakes down the large scale topology of the initial field. An energetically steady state is reached, with a double arcade overall topology, in which the driving causes continuous creation of small scale thin current sheets at various locations in the arcade structures.

Key words

Solar flares MHD Reconnection 

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Copyright information

© Springer Science+Business Media Dordrecht 1994

Authors and Affiliations

  • K. Galsgaard
    • 1
  • Å. Nordlund
    • 1
  1. 1.Copenhagen University Observatory, NBIfAFGCopenhagen K.Denmark

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