English

Testing the Metric-Affine Gravity Using Particle Dynamics and Photon Motion

General Relativity and Quantum Cosmology 2023-03-10 v1

Abstract

This work mainly focuses to unveil the optical features of a black hole. For this objective, we utilize the metric-affine black hole geometry with the inclusion of dilation, spin, and shear charge. The Lagrangian coefficients f1f_1 and d1d_1 are the main parameters, where f1<0f_1<0, which differentiate the solutions by d1=8f1,  d1=8f1,  &  d1=±8f1d_1=8f_1,\;d_1=-8f_1,\;\&\;d_1=\pm8f_1. Based on these parameters, we carry out this work in two cases, i.e., d1=8f1,  &  d1=8f1d_1=8f_1,\;\&\;d_1=-8f_1. We forecast the detailed impact of dilation, spin, and shear charges on the optical properties of the black holes in both cases. To unreveal the optical features, we calculate horizon radius, inner stable circular orbit, photon sphere radius, BH shadows, quasi-periodic oscillations, the red-blue shift of photon particles, effective force, weak gravitational lensing, and image magnification by using metric-affine gravity black hole geometry.

Keywords

Cite

@article{arxiv.2303.05438,
  title  = {Testing the Metric-Affine Gravity Using Particle Dynamics and Photon Motion},
  author = {Allah Ditta and Xia Tiecheng and Saadia Mumtaz and Farruh Atamurotov and G. Mustafa and Ahmadjon Abdujabbarov},
  journal= {arXiv preprint arXiv:2303.05438},
  year   = {2023}
}

Comments

38 pages, 22 figures

R2 v1 2026-06-28T09:09:44.830Z