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Electrodynamics of Magnetars: Implications for the Persistent X-ray Emission and Spindown of the Soft Gamma Repeaters and Anomalous X-ray Pulsars

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In this paper, the authors considered the structure of neutron star magnetospheres threaded by large-scale electrical currents and the effect of resonant Compton scattering by the charge carriers (both electrons and ions) on the emergent X-ray spectra and pulse profiles.
Abstract
(ABBREVIATED) We consider the structure of neutron star magnetospheres threaded by large-scale electrical currents, and the effect of resonant Compton scattering by the charge carriers (both electrons and ions) on the emergent X-ray spectra and pulse profiles. In the magnetar model for the SGRs and AXPs, these currents are maintained by magnetic stresses acting deep inside the star. We construct self-similar, force-free equilibria of the current-carrying magnetosphere with a power-law dependence of magnetic field on radius, B ~ r^(-2-p), and show that a large-scale twist softens the radial dependence to p < 1. The spindown torque acting on the star is thereby increased in comparison with a vacuum dipole. We comment on the strength of the surface magnetic field in the SGR and AXP sources, and the implications of this model for the narrow measured distribution of spin periods. A magnetosphere with a strong twist, B_\phi/B_\theta = O(1) at the equator, has an optical depth ~ 1 to resonant cyclotron scattering, independent of frequency (radius), surface magnetic field strength, or charge/mass ratio of the scattering charge. When electrons and ions supply the current, the stellar surface is also heated by the impacting charges at a rate comparable to the observed X-ray output of the SGR and AXP sources, if B_{dipole} ~ 10^{14} G. Redistribution of the emerging X-ray flux at the ion and electron cyclotron resonances will significantly modify the emerging pulse profile and, through the Doppler effect, generate a non-thermal tail to the X-ray spectrum. The sudden change in the pulse profile of SGR 1900+14 after the 27 August 1998 giant flare is related to an enhanced optical depth to electron cyclotron scattering, resulting from a sudden twist imparted to the external magnetic field.

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Journal ArticleDOI

The evolution and structure of pulsar wind nebulae

TL;DR: In this article, the authors describe how pulsars steadily dissipate their rotational energy via relativistic winds. Confinement of these outflows generates luminous pulsar wind nebulae, seen across the electromagnetic spectrum in...
Journal ArticleDOI

The strongest cosmic magnets: soft gamma-ray repeaters and anomalous X-ray pulsars

Abstract: Two classes of X-ray pulsars, the anomalous X-ray pulsars and the soft gamma-ray repeaters, have been recognized in the last decade as the most promising candidates for being magnetars: isolated neutron stars powered by magnetic energy. I review the observational properties of these objects, focussing on the most recent results, and their interpretation in the magnetar model. Alternative explanations, in particular those based on accretion from residual disks, are also considered. The possible relations between these sources and other classes of neutron stars and astrophysical objects are also discussed.
Journal ArticleDOI

Physics of strongly magnetized neutron stars

TL;DR: In this paper, the exotic physics of high magnetic field regime was discussed, where a new array of processes becomes possible and even dominant and where familiar processes acquire unusual properties, including free particles, atoms, molecules, plasma and condensed matter in strong magnetic fields, photon propagation in magnetized plasmas, freeparticle radiative processes, the physics of neutron star interiors and field evolution and decay mechanisms.
Journal ArticleDOI

The mcgill magnetar catalog

TL;DR: In this paper, the authors present a catalog of the 26 currently known magnetars and magnetar candidates, and investigate and plot possible correlations between their timing, X-ray, and multiwavelength properties.
References
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Journal ArticleDOI

Correlations between Spectral Properties and Spin-down Rate in Soft Gamma-Ray Repeaters and Anomalous X-Ray Pulsars

TL;DR: In this paper, the authors studied the spectral properties of anomalous X-ray pulsars (AXPs) and soft gamma-ray repeaters (SGRs) over the energy range 0.5-10.0 keV and found that the overall hardness of the spectra increases with increasing spin-down rate.
Journal ArticleDOI

Magnetized atmospheres around neutron stars accreting at low rates

TL;DR: In this article, the atmospheric structure, inten-sity, and emergent spectrum for a plane-parallel pure hydrogen medium were derived for the case of low-luminosity magnetic accreting.
Journal ArticleDOI

Reactivation and Precise Interplanetary Network Localization of the Soft Gamma Repeater SGR 1900+14

TL;DR: In 1998, the soft gamma repeater SGR 1900+14 emerged from several years of quiescence and emitted a series of intense bursts, one with a time history unlike any previously observed from this source.
Journal ArticleDOI

Transport of Magnetic Fields in Convective, Accreting Supernova Cores

TL;DR: In this paper, the authors consider the amplification and transport of a magnetic field in the collapsed core of a massive star, including both the region between the neutrinosphere and the shock, and the central, opaque core, and compare the expected magnetic stresses in this convective "gain layer" with those deep inside the neutron core.
Journal ArticleDOI

Constraints on thermal emission models of anomalous x-ray pulsars

TL;DR: In this article, the authors compare the detailed predictions of models of the surface emission from a magnetar to the observed spectral and variability properties of anomalous X-ray pulsars (AXPs).
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