MCMC constraints on Lorentz-violating and string-density parameters in a dyonic Kalb-Ramond black hole with string cloud from twin-peak QPOs and EHT shadows, plus thermodynamic and radiative analysis.
Dyonic Black Holes in Lorentz-Violating Gravity with a Background Kalb--Ramond Field
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abstract
By introducing a nonminimal coupling between the Kalb--Ramond field and the electromagnetic field, we construct an exact four-dimensional static, spherically symmetric dyonic black hole solution in Lorentz-violating gravity with a background Kalb--Ramond field. The curvature invariants show that the spacetime retains a genuine curvature singularity at $r=0$. We then analyze the geodesic motion of null and timelike particles and obtain the photon-sphere radius, the shadow radius, and the innermost stable circular orbit, demonstrating that both the Lorentz-violating parameter and the dyonic charges can appreciably modify the shadow size and the domain of stable circular motion. In the extended phase space, we derive the thermodynamic quantities and verify the first law of black hole thermodynamics together with the Smarr relation. The system also exhibits a first-order phase transition between small and large black holes, and its phase structure is strongly influenced by the Lorentz-violating parameter and the dyonic charges.
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gr-qc 1years
2026 1verdicts
UNVERDICTED 1representative citing papers
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MCMC Constraints on Dyonic Kalb-Ramond Black Holes with a Cloud of Strings from Twin-Peak QPOs and EHT Shadows
MCMC constraints on Lorentz-violating and string-density parameters in a dyonic Kalb-Ramond black hole with string cloud from twin-peak QPOs and EHT shadows, plus thermodynamic and radiative analysis.