Charged Simpson-Visser AdS Black Holes: Geodesic Structure and Thermodynamic Properties
Faizuddin Ahmed, Ahmad Al-Badawi, Mohsen Fathi

TL;DR
This paper applies the Simpson-Visser regularization to charged AdS black holes, analyzing their geodesic structure, thermodynamics, and observational features, revealing how regularization influences black hole stability and observable phenomena.
Contribution
It introduces a regularized charged AdS black hole model using Simpson-Visser scheme and studies its geodesic and thermodynamic properties in detail, connecting theory with recent observations.
Findings
Regularization affects photon sphere and shadow size.
Thermodynamic analysis shows stability conditions depend on regularization parameter.
Comparison with EHT data provides observational relevance.
Abstract
In this article, we apply the Simpson-Visser (SV) regularization scheme to Anti-de Sitter (AdS) charged black holes and investigate the resulting spacetime geometry in detail, with emphasis on both geodesic structure and thermodynamic behavior. In particular, we analyze the motion of massless particle, focusing on key features such as the photon sphere, black hole shadow, photon trajectory and the dynamics of charged particles, including the characteristics of the circular and type of orbits. Furthermore, we compare the theoretical predictions of the charged SV-AdS black hole with recent observations reported by the Event Horizon telescope (EHT) for M87* and Sgr~A*. Beyond the geodesic analysis, we explore the thermodynamics of the regularized charged SV-AdS black hole by deriving essential quantities such as the Hawking temperature, Gibbs free energy, and specific heat capacity.…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Black Holes and Theoretical Physics · Astrophysics and Cosmic Phenomena
