We present results from the spectral fitting of the candidate black hole X-ray binary Swift J1753.5-0127 in an accretion state previously unseen in this source. We fit the 0.7-78 keV spectrum with a number of models, however the preferred model is one of a multi-temperature disk with an inner disk temperature kTin=0.252±0.003 keV scattered into a steep power-law with photon index Γ=6.39−0.02+0.08 and an additional hard power law tail (Γ=1.79±0.02). We report on the emergence of a strong disk-dominated component in the X-ray spectrum and we conclude that the source has entered the soft state for the first time in its ~10 year prolonged outburst. Using reasonable estimates for the distance to the source (3 kpc) and black hole mass (5M⊙), we find the unabsorbed luminosity (0.1-100 keV) to be ≈0.60% of the Eddington luminosity, making this one of the lowest luminosity soft states recorded in X-ray binaries. We also find that the accretion disk extended towards the compact object during its transition from hard to soft, with the inner radius estimated to be Rin=28.0−0.4+0.7Rg or ~12Rg, dependent on the boundary condition chosen, assuming the above distance and mass, a spectral hardening factor f=1.7 and a binary inclination i=55∘.
@article{arxiv.1602.05816,
title = {A low-luminosity soft state in the short period black hole X-ray binary Swift J1753.5-0127},
author = {A. W. Shaw and P. Gandhi and D. Altamirano and P. Uttley and J. A. Tomsick and P. A. Charles and F. Fürst and F. Rahoui and D. J. Walton},
journal= {arXiv preprint arXiv:1602.05816},
year = {2016}
}
Comments
10 pages, 5 figures, accepted for publication in MNRAS