English

Analytical Model of Fast Magnetic Reconnection with a Large Guide Field

Plasma Physics 2010-01-12 v1 Space Physics

Abstract

Analytical theory of fast magnetic reconnection with a large guide field is presented for the first time. We confirm that two distinct reconnection regimes are possible depending on whether the diffusion region thickness δ\delta is larger or smaller than the sound gyroradius ρs\rho_s. The reconnection is slow or Sweet-Parker-like for δρs\delta \gtrsim \rho_s, and fast otherwise. In the fast regime, however, we find that ion viscosity μ\mu plays a critical role. In particular, for δ<ρs\delta < \rho_s the diffusion region thickness is proportional to Ha1Ha^{-1} with Ha1/ημHa \propto 1/\sqrt{\eta \mu} the Hartmann number, and the reconnection rate is proportional to Pr1/2Pr^{-1/2} with Pr=μ/ηPr = \mu/\eta the Prandtl number and η\eta the resistivity. If the perpendicular ion viscosity is employed for μ\mu the reconnection rate becomes independent of both plasma β\beta and collision frequencies and therefore potentially fast.

Keywords

Cite

@article{arxiv.1001.1708,
  title  = {Analytical Model of Fast Magnetic Reconnection with a Large Guide Field},
  author = {Andrei N. Simakov and L. Chacón and A. Zocco},
  journal= {arXiv preprint arXiv:1001.1708},
  year   = {2010}
}