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Taylor and Francis Group, Geophysical and Astrophysical Fluid Dynamics, 1(99), p. 77-93

DOI: 10.1080/03091920512331328071

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Kinematic reconnection at a magnetic null point: fan-aligned current

Journal article published in 2005 by David I. Pontin, Gunnar Hornig, Er R. Priest ORCID
This paper is available in a repository.
This paper is available in a repository.

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Abstract

Magnetic reconnection at a three-dimensional null point is a natural extension of the familiar two-dimensional X-point reconnection. A model is set up here for reconnection at a null point with current directed parallel to the fan plane, by solving the kinematic, steady, resistive magnetohydrodynamic equations in its vicinity. The magnetic field is assumed to be steady, and a localised diffusion region surrounding the null point is also assumed, outside which the plasma is ideal. Particular attention is focussed on the way that the magnetic flux changes its connections as a result of the reconnection. The resultant plasma flow is found to cross the spine and fan of the null, and thus transfer magnetic flux between topologically distinct regions. Solutions are also found in which the flow crosses either the spine or fan only.