A NuSTAR confirmation of the 36 ks hard X-ray pulse-phase modulation in the magnetar 1E 1547.05408
arXiv:2102.00153 · doi:10.1093/mnras/stab149
Abstract
This paper describes an analysis of the NuSTAR data of the fastest-rotating magnetar 1E 15475408, acquired in 2016 April for a time lapse of 151 ks. The source was detected with a 1-60 keV flux of ergs s cm, and its pulsation at a period of sec. In 8-25 keV, the pulses were phase-modulated with a period of ks, and an amplitude of sec. This reconfirms the Suzaku discovery of the same effect at ks, made in the 2009 outburst. These results strengthen the view derived from the Suzaku data, that this magnetar performs free precession as a result of its axial deformation by , possibly caused by internal toroidal magnetic fields reaching G. Like in the Suzaku case, the modulation was not detected in energies below keV. Above 10 keV, the pulse-phase behaviour, including the 36 ks modulation parameters, exhibited complex energy dependences: at keV, the modulation amplitude increased to sec, and the modulation phase changed by over 10--27 keV, followed by a phase reversal. Although the pulse significance and pulsed fraction were originally very low in keV, they both increased noticeably, when the arrival times of individual photons were corrected for these systematic pulse-phase variations. Possible origins of these complex phenomena are discussed, in terms of several physical processes that are specific to ultra-strong magnetic fields.
Accepted for publication in MNRAS; 20 pages, 19 figures, and 2 tables
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