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Investigating strong gravitational lensing effects by suppermassive black holes with Horndeski gravity

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arxiv 2109.04450 v2 pith:V4H4HGIF submitted 2021-09-09 gr-qc

Investigating strong gravitational lensing effects by suppermassive black holes with Horndeski gravity

classification gr-qc
keywords blackholesgravityhorndeskideltaimagesangulardeviation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study gravitational lensing in strong-field limit by a static spherically symmetric black hole in quartic scalar field Horndeski gravity having additional hair parameter $q$, evading the no-hair theorem. We find an increase in the deflection angle $\alpha_D$, photon sphere radius $x_{ps}$, and angular position $\theta_{\infty}$ that increases more quickly while angular separation $s$ more slowly, but the ratio of the flux of the first image to all other images $r_{mag}$ decreases rapidly with increasing magnitude of the hair $q$. We also discuss the astrophysical consequences in the supermassive black holes at the centre of several galaxies and note that the black holes in Horndeski gravity can be quantitatively distinguished from the Schwarzschild black hole. Notably, we find that the deviation $\Delta\theta_{\infty}$ of black holes in Horndeski gravity from their general relativity (GR) counterpart, for supermassive black holes Sgr A* and M87, for $q=-1$ respectively, can reach as much as $25.192~\mu$as and $18.92~\mu$as while $\Delta s$ is about $1.121~\mu$as for Sgr A* and $0.8424~\mu$as for M87*. The ratio of the flux of the first image to all other images suggest that the Schwarzschild images are brighter than those of the black holes in Horndeski gravity, wherein the deviation $|\Delta r_{mag}|$ is as much as 3.082. The results suggest that observational tests of hairy black holes in Horndeski gravity are indeed feasible.

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  1. Optical Landscapes and High-Energy Collisions in Hairy Horndeski Gravity

    gr-qc 2026-07 reject novelty 5.0

    For the hairy Horndeski metric, photon-sphere stability is analyzed cleanly, but the advertised Bañados-Silk-West energy divergence at Q = -2M is invalid because the critical angular momentum diverges and the collisio...