English

Time-resolved spectroscopy on the heartbeat state of GRS 1915+105 using AstroSat

High Energy Astrophysical Phenomena 2022-02-09 v1

Abstract

AstroSat spectra of the black hole system GRS 1915+105 during the heartbeat state (with a varying oscillation period from 150 to 100 secs) were analysed using a truncated relativistic disc model along with a Comptonization component. Spectra were fitted for segments of length ~ 24 secs. The oscillation can be described as coordinated variations of the accretion rate, Comptonised flux, and the inner disc radius, with the latter ranging from 1.235-5 gravitational radii. Comparison with results from the χ\chi and Intermediate states shows that while the accretion rate and the high energy photon index were similar, the inner disc radius and the fraction of Comptonised photons were larger for these states than for the heartbeat one. The coronal efficiency ηLac/M˙c2\eta \equiv L_{ac}/\dot M c^2, where LacL_{ac} is the radiative luminosity generated in the corona is found to be approximately M˙2/3\propto \dot M^{-2/3} for all the observations. The efficiency decreases with inner radii for the heartbeat state but has similar values for the χ\chi and Intermediate states where the inner radii is larger. The implications of these results are discussed.

Keywords

Cite

@article{arxiv.2201.04326,
  title  = {Time-resolved spectroscopy on the heartbeat state of GRS 1915+105 using AstroSat},
  author = {Divya Rawat and Ranjeev Misra and Pankaj Jain and J. S. Yadav},
  journal= {arXiv preprint arXiv:2201.04326},
  year   = {2022}
}

Comments

7 pages, 5 figures, Accepted for publication in MNRAS