Shadows, rings and optical appearance of a magnetically charged regular black hole illuminated by various accretion disks
Soroush Zare, Luis M. Nieto, Xing-Hui Feng, Shi-Hai Dong, and Hassan, Hassanabadi

TL;DR
This paper explores how a magnetically charged regular black hole's optical appearance, including shadows and rings, is affected by a parameter q and different accretion disk models, using EHT observations for constraints.
Contribution
It introduces a model of a magnetically charged regular black hole influenced by nonlinear electrodynamics and analyzes its optical features and constraints from EHT data.
Findings
Photon sphere radius depends on parameter q
Shadow silhouette varies with accretion disk models
Constraints on q derived from EHT observations
Abstract
The Event Horizon Telescope (EHT) imaging of the supermassive black holes at the centers of Messier 87 galaxy and the Milky Way galaxy marks a significant step in observing the photon rings and central brightness depression that define the optical appearance of black holes with an accretion disk scenario. Inspired by this, we take into account a static and spherically symmetric magnetically charged regular black hole (MCRBH) metric characterized by its mass and an additional parameter q, which arises from the coupling of Einstein gravity and nonlinear electrodynamics (NLED) in the weak field approximation. This parameterized model offers a robust foundation for testing the coupling of Einstein gravity and NLED in the weak-field approximation, using the EHT observational results. In this study, we investigate the geodesic motion of particles around the solution, followed by a discussion…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astronomical Observations and Instrumentation · Experimental and Theoretical Physics Studies
