X-ray timing studies of the low-field magnetar CXOU J164710.2-455216
arXiv:1905.02862 · doi:10.3847/2041-8213/ab1f86
Abstract
We report results of X-ray timing analyses for the low-field magnetar CXOU~J164710.2455216 which exhibited multiple outbursts. We use data taken with NICER, NuSTAR, Chandra, and Neil-Gehrels-Swift telescopes between 2017 and 2018 when the source was in an active state. We perform semi-phase-coherent timing analyses to measure the spin parameters and a spin-inferred magnetic-field strength () of the magnetar. Using a semi-phase-coherent method, we infer the magnetic field strengths to be at the observation period (MJD 58000), and by comparing with previous frequency measurements (MJD 54000) a long-term average value of is estimated to be . So this analysis may add CXOU~J164710.2455216 to the ranks of low-field magnetars. The inferred characteristic age () is 1--2 Myr which is smaller than the age of Westerlund~1, so the magnetar's association with the star cluster is still secure. For the low dipole field and the large age, recent multiple outbursts observed from the source are hard to explain unless it has strong magnetic multipole components. We also find timing anomalies around outburst epochs, which suggests that there may be spin-down torque applied to the magnetar near the epochs as was proposed in magnetar models.
7 pages, 2 figures, accepted for publication in ApJL
References in corpus (9)
- Untwisting magnetospheres of neutron stars
- Magnetars: Properties, Origin and Evolution
- Magnetar-like Emission from the Young Pulsar in Kes 75
- Discovery of luminous pulsed hard X-ray emission from anomalous X-ray pulsars 1RXS J1708-4009, 4U 0142+61 and 1E 2259+586 by INTEGRAL and RXTE
- Triggering magnetar outbursts in 3D force-free simulations
- NuSTAR observations of X-ray bursts from the magnetar 1E 1048.1-5937
- Spin-down evolution and radio disappearance of the magnetar PSR J16224950
- Pulse Phase-coherent Timing and Spectroscopy of CXOU J164710.2-45521 Outbursts
- The multi-outburst activity of the magnetar in Westerlund I