Super-Eddington accretion of the first Galactic Ultra-luminous X-ray pulsar Swift J0243.6+6124
arXiv:2203.12227
Abstract
We present a detailed timing study of the pulse profile of Swift J0243.6+6124 with HXMT and Fermi/GBM data during its 2017 giant outburst. The double-peak profile at luminosity above erg\,s is found to be 0.25 phase offset from that below erg\,s, which strongly supports for a transition from a pencil beam to a fan beam, and thus for the formation of shock dominated accretion column. During the rising stage of the high double-peak regime, the faint peak got saturated in 10-100 keV band above a luminosity of erg\,s, which is coincident with sudden spectral changes of both the main and faint peaks. They imply a sudden change of emission pattern around . The spin-up rate () is linearly correlated with luminosity () below , consistent with the prediction of a radiation pressure dominated (RPD) disk. The relation flattens above , indicating a less efficient transfer of angular momentum and a change of accretion disk geometry above . It is likely due to irradiation of the disk by the central accretion column and indicates significant radiation feedback before the inner disk radius reaching the spherization radius.
8 pages, 5 figs, to appear on MNRAS