Twisting, reconnecting magnetospheres and magnetar spindown

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Abstract

We present the first simulations of evolving, strongly twisted magnetar magnetospheres. Slow shearing of the magnetar crust is seen to lead to a series of magnetospheric expansion and reconnection events, corresponding to X-ray flares and bursts. The axisymmetric simulations include rotation of the neutron star and the magnetic wind through the light cylinder. We study how the increasing twist affects the spindown rate of the star, finding that a dramatic increase in spindown occurs. Particularly spectacular are explosive events caused by the sudden opening of large amounts of overtwisted magnetic flux, which may be associated with the observed giant flares. These events are accompanied by a short period of ultrastrong spindown, resulting in an abrupt increase in spin period, such as was observed in the giant flare of SGR 1900+14. © 2012. The American Astronomical Society. All rights reserved.

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Parfrey, K., Beloborodov, A. M., & Hui, L. (2012). Twisting, reconnecting magnetospheres and magnetar spindown. Astrophysical Journal Letters, 754(1). https://doi.org/10.1088/2041-8205/754/1/L12

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