XMM-Newton discovery of 2.6 s pulsations in the soft gamma-ray repeater SGR 1627-41
arXiv:0812.0014 · doi:10.1088/0004-637X/690/2/L105
Abstract
After nearly a decade of quiescence, the soft gamma-ray repeater SGR 1627-41 reactivated on 2008 May 28 with a bursting episode followed by a slowly decaying enhancement of its persistent emission. To search for the still unknown spin period of this SGR taking advantage of its high flux state, we performed on 2008 September 27-28 a 120 ks long X-ray observation with the XMM-Newton satellite. Pulsations with P = 2.594578(6) s were detected at a higher than 6-sigma confidence level, with a double-peaked pulse profile. The pulsed fraction in the 2-12 keV range is 19% +/- 3% and 24% +/- 3% for the fundamental and the second harmonic, respectively. The observed 2-10 keV flux is 3.4E-13 erg/cm^2/s, still a factor of ~ 5 above the quiescent pre-burst-activation level, and the spectrum is well fitted by an absorbed power law plus blackbody model (photon index Gamma = 0.6, blackbody temperature kT = 0.5 keV, and absorption nH = 1.2E+23 cm^-2). We also detected a shell of diffuse soft X-ray emission which is likely associated with the young supernova remnant G337.0-0.1.
Minor changes to match the final version (to appear in The Astrophysical Journal Letters). 5 pages in emulate-apj style, 1 table, 4 figures (1 color)
References in corpus (4)
- 1E 1547.0-5408: a radio-emitting magnetar with a rotation period of 2 seconds
- X-ray spectra from magnetar candidates. I. Monte Carlo simulations in the non-relativistic regime
- The 2008 May burst activation of SGR 1627-41
- XMM-Newton observation of the Soft Gamma Ray Repeater SGR 1627-41 in a low luminosity state
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- Spin-down rate and inferred dipole magnetic field of the soft gamma-ray repeater SGR 1627-41
- X-ray and radio observations of the magnetar Swift J1834.9-0846 and its dust-scattering halo
- On the Origin of Radio Emission from Magnetars
- Neutron stars: Observational diversity and evolution
- Correlation of Burst Behaviour with Magnetar Age