Analytical Model of Fast Magnetic Reconnection with a Large Guide Field

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 is larger or smaller than the sound gyroradius s. The reconnection is slow or Sweet-Parker-like for δ s, and fast otherwise. In the fast regime, however, we find that ion viscosity μ plays a critical role. In particular, for δ < s the diffusion region thickness is proportional to Ha-1 with Ha 1/η μ the Hartmann number, and the reconnection rate is proportional to Pr-1/2 with Pr = μ/η the Prandtl number and η the resistivity. If the perpendicular ion viscosity is employed for μ the reconnection rate becomes independent of both plasma β and collision frequencies and therefore potentially fast.

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