English

Evidence for GR rotational frame-dragging in the light from the Sgr A* supermassive black hole

Astrophysics of Galaxies 2009-11-13 v1

Abstract

The analysis of flare start-times confirms the periods found years ago (Aschenbach et al., 2004) in the near-infrared and X-ray light-curves related to the Sgr A* black hole. The assignment of the frequencies found to radial and vertical epicyclic frequencies ν\sbr\nu\sb{\rm r}, ν\sbv\nu\sb{\rm v}, respectively, as well as to the Kepler orbital frequency ν\sbK\nu\sb{\rm K} reveals resonances of ν\sbv\nu\sb{\rm v} / ν\sbr\nu\sb{\rm r}=7:2, and ν\sbK\nu\sb{\rm K} / ν\sbv\nu\sb{\rm v}=3:1. The highest observed frequency of 10 mHz is identified as the Kepler frequency corrected by the rotational frame-dragging frequency, as expected from the Lense-Thirring effect. These frequency assignments conclude a black hole mass of M = (4.10-4.34)×10\sp6M\times10\sp{6} M_\odot and a spin of a = (0.99473-0.99561).

Keywords

Cite

@article{arxiv.0911.2431,
  title  = {Evidence for GR rotational frame-dragging in the light from the Sgr A* supermassive black hole},
  author = {Bernd Eduard Aschenbach},
  journal= {arXiv preprint arXiv:0911.2431},
  year   = {2009}
}

Comments

revised version of a paper presented at the 2009 Frascati Workshop, Vulcano, May 2009, to be published in Mem.S.A.It