NuSTAR view of the X-ray transients Swift J174805.3-244637 and IGR J17511-3057
arXiv:2409.20323
Abstract
We report on the NuSTAR observations of the neutron star low-mass X-ray binary Swift J174805.3-244637 (hereafter Swift~J17480) and the accreting millisecond X-ray pulsar IGR~J17511-3057 performed on March 4, 2023, and April 8, 2015, respectively. We describe the continuum emission of Swift~J17480 with a combination of two soft thermal components and an additional hard X-ray emission described by a power-law. We suggest that the spectral properties of Swift~J17480 are consistent with a soft spectral state. The source IGR~J17511-3057 exhibits a hard spectrum characterized by a Comptonized emission from the corona. The X-ray spectrum of both sources shows evidence of disc reflection. For the first time, we employ the self-consistent reflection models ({\tt relxill} and {\tt relxillNS}) to fit the reflection features in the \nustar{} spectrum. From the best-fit spectral model, we find an inner disc radius () is precisely constrained to and inclination to for Swift~J17480. We determine an inner disc radius of and inclination of for IGR~J17511-3057. A low inclination angle of the system is required for both sources. For the source IGR~J17511-3057, spinning at ms, the value of co-rotation radius () is estimated to be km (, consistent with the position of inner disc radius as . We further place an upper limit on the magnetic field strength of the sources, considering the disc is truncated at the magnetospheric radius.
28 pages, 13 figures, 3 tables, Accepted for publication in Journal of High Energy Astrophysics (JHEAP)