English

Strong Gravitational Lensing by Static Black Holes in Effective Quantum Gravity

Cosmology and Nongalactic Astrophysics 2024-10-17 v1 General Relativity and Quantum Cosmology

Abstract

We investigate strong gravitational lensing by two static black hole models (Model-1 and Model-2) within the Effective Quantum Gravity (EQG) framework, characterized by mass MM and parameter ζ\zeta. For ζ=0\zeta = 0, they reduce to the Schwarzschild solution, and depending on the parameters, they describe black holes with an event and Cauchy horizon (Model-1), a single horizon (Model-2), or no horizons. Using SMBHs Sgr A* and M87* as lenses and integrating theoretical predictions with recent EHT data, we identify significant differences in lensing signatures due to quantum corrections. For Model-1, the deviations of the lensing observables: δθ|\delta\theta_{\infty}| of black holes in EQG from Schwarzschild black hole, for SMBHs Sgr A* and M87, can reach as much as 1.75 μ1.75~\muas and 1.32 μ1.32~\muas, while δs|\delta s| is about 30.1230.12~nas for Sgr A* and 22.6322.63~nas for M87*. The flux ratio of the first image to all subsequent packed images indicates that EQG black hole images are brighter than their Schwarzschild counterparts, with a deviation in the brightness ratio δrmag|\delta r_{mag}| reaching up to 2.02. The time delays between the second and first images, denoted δT2,1|\delta T_{2,1}|, exhibit substantial deviations from the GR counterpart, reaching up to 1.53 min for Sgr A* and 1159.9 min for M87*. The EHT constraints on θsh\theta_{sh} of Sgr A* and M87* within the 1σ1\sigma region limit the parameters ζ\zeta. Our analysis concludes that EQG black holes are consistent with the EHT observations within this finite space.

Keywords

Cite

@article{arxiv.2410.12382,
  title  = {Strong Gravitational Lensing by Static Black Holes in Effective Quantum Gravity},
  author = {Yiyang Wang and Amnish Vachher and Qiang Wu and Tao Zhu and Sushant G. Ghosh},
  journal= {arXiv preprint arXiv:2410.12382},
  year   = {2024}
}

Comments

The paper is submitted to EPJC on 2024-10-03