For a charged accelerating AdS black hole in constant-curvature f(R) gravity, the paper claims van der Waals-like critical behavior and computes Joule-Thomson inversion curves whose ratio T_i^min/T_c is set to 1/2 by choosing a=1.12.
Charged accelerating black hole in $f(R)$ gravity
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abstract
We obtain a charged accelerating AdS black hole solution in $f(R)$ gravity and investigate its thermodynamic behaviour. We consider low-acceleration black holes that do not have an acceleration horizon and obtain the first law of thermodynamics for them. We further study the parameter space of charged slowly accelerating $f(R)$ AdS black holes before investigating the behaviour of the free energy in both the canonical and grand canonical ensembles. We find a generalization of the reverse isoperimetric inequality, applicable to black holes in $f(R)$ gravity, that indicates these black holes can become super-entropic relative to their counterparts in Einstein gravity.
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gr-qc 1years
2019 1verdicts
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Charged accelerating AdS black hole of $f(R)$ gravity and the Joule-Thomson expansion
For a charged accelerating AdS black hole in constant-curvature f(R) gravity, the paper claims van der Waals-like critical behavior and computes Joule-Thomson inversion curves whose ratio T_i^min/T_c is set to 1/2 by choosing a=1.12.