English

Testing Rotating Regular Metrics with EHT Results of Sgr A*

General Relativity and Quantum Cosmology 2022-11-10 v3 High Energy Astrophysical Phenomena High Energy Physics - Theory

Abstract

The Event Horizon Telescope (EHT) observation unveiled the first image of supermassive black hole Sgr A* showing a shadow of diameter θsh=48.7±7μ\theta_{sh}= 48.7 \pm 7\,\muas with fractional deviation from the Schwarzschild black hole shadow diameter δ=0.080.09+0.09 (VLTI),0.040.10+0.09 (Keck)\delta = -0.08^{+0.09}_{-0.09}~\text{(VLTI)},-0.04^{+0.09}_{-0.10}~\text{(Keck)}. The Sgr A* shadow size is within  10%~10\% of the Kerr predictions, providing us with another tool to investigate the nature of strong-field gravity. We use the Sgr A* shadow observables to constrain metrics of four independent and well-motivated, parametrically different from Kerr spacetime, rotating regular spacetimes, and the corresponding no-horizon spacetimes. We present constraints on the deviation parameter gg of rotating regular black holes. The shadow angular diameter θsh\theta_{sh} within 1σ1 \sigma region, places bounds on the parameters aa and gg. Together with EHT bounds on θsh\theta_{sh} and δ\delta of Sgr A*, our analysis concludes that the three rotating regular black holes, viz., Bardeen Hayward, and Simpson-Visser black holes, and corresponding no-horizon spacetimes agree with the EHT results of Sgr A*. Thus, these three rotating regular spacetimes and Kerr black holes are indiscernible in some parameter space, and one can not rule out the possibility of the former being strong candidates for astrophysical black holes.

Keywords

Cite

@article{arxiv.2207.00078,
  title  = {Testing Rotating Regular Metrics with EHT Results of Sgr A*},
  author = {Rahul Kumar Walia and Sushant G Ghosh and Sunil D Maharaj},
  journal= {arXiv preprint arXiv:2207.00078},
  year   = {2022}
}

Comments

21 pages, 16 figures and 1 table. Published in the Astrophysical Journal

R2 v1 2026-06-24T12:10:24.750Z