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Phys. Rev. Lett. 95, 235003 (2005) [4 pages]

X-Point Collapse and Saturation in the Nonlinear Tearing Mode Reconnection

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N. F. Loureiro1, S. C. Cowley1,2, W. D. Dorland3, M. G. Haines1, and A. A. Schekochihin4
1Plasma Physics Group, Blackett Laboratory, Imperial College, Prince Consort Road, London SW7 2BW, United Kingdom
2Department of Physics and Astronomy, UCLA, Los Angeles, California 90095-1547, USA
3Department of Physics, University of Maryland, College Park, Maryland 20742-3511, USA
4DAMTP, University of Cambridge, Cambridge CB3 0WA, United Kingdom

Received 31 July 2005; published 29 November 2005

We study the nonlinear evolution of the resistive tearing mode in slab geometry in two dimensions. We show that, in the strongly driven regime (large Δ), a collapse of the X point occurs once the island width exceeds a certain critical value ∼1/Δ. A current sheet is formed and the reconnection is exponential in time with a growth rate η1/2, where η is the resistivity. If the aspect ratio of the current sheet is sufficiently large, the sheet can itself become tearing-mode unstable, giving rise to secondary islands, which then coalesce with the original island. The saturated state depends on the value of Δ. For small Δ, the saturation amplitude is Δ and quantitatively agrees with the theoretical prediction. If Δ is large enough for the X-point collapse to have occurred, the saturation amplitude increases noticeably and becomes independent of Δ.

© 2005 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevLett.95.235003
DOI:
10.1103/PhysRevLett.95.235003
PACS:
52.35.Vd, 52.35.Py, 52.65.Kj