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Accelerating AdS black holes in gravity's rainbow
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abstract
Motivated by the effect of the energy of moving particles in $C-$metric, we first obtain exact accelerating black hole solutions in gravity's rainbow. Then, we study the effects of gravity's rainbow and $C-$metric parameters on the Ricci and Kretschmann scalars, and also the asymptotical behavior of this solution. Next, we indicate how different parameters of the obtained accelerating black holes in gravity's rainbow affect thermodynamics quantities (such as the Hawking temperature, and entropy) and the local stability (by evaluating the heat capacity). In the following, we extract the geodesic equations to determine the effects of various parameters on photon trajectory in the vicinity of this black hole, as well as obtain the radius of the photon sphere and the corresponding critical impact parameter to gain insight into AdS black hole physics by adding the gravity's rainbow to $C-$metric.
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Cited by 1 Pith paper
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Stability and Criticality Behaviors of Accelerating Charged AdS Black Holes in Rainbow Gravity
The paper claims a charge-independent critical ratio for accelerating charged AdS black holes in rainbow gravity, but the derivation is internally inconsistent.
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