Remnant for all Black Objects due to Gravity's Rainbow
arXiv:1410.5706 · doi:10.1016/j.nuclphysb.2015.03.014
Abstract
We argue that a remnant is formed for all black objects in gravity's rainbow. This will be based on the observation that a remnant depends critically on the structure of the rainbow functions, and this dependence is a model independent phenomena. We thus propose general relations for the modified temperature and entropy of all black objects in gravity's rainbow. We explicitly check this to be the case for Kerr, Kerr-Newman-dS, charged-AdS, and higher dimensional Kerr-AdS black holes. We also try to argue that a remnant should form for black Saturn in gravity's rainbow. This work extends our previous results on remnants of Schwarzschild black holes [ arXiv:1402.5320] and black rings [arXiv:1409.5745].
21 pages, 13 figures, Accepted in Nucl.Phys.B
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- F(R) gravity's rainbow and its Einstein counterpart
- The Most General Form of Deformation of the Heisenberg Algebra from the Generalized Uncertainty Principle
- Thermodynamic stability of modified Schwarzschild-AdS black hole in rainbow gravity
- Gravitational Collapse in Gravity's Rainbow
- Black hole thermodynamics in Lovelock gravity's rainbow with (A)dS asymptote
- Constraints on rainbow gravity functions from black hole thermodynamics
- Thermodynamics of Reissner-Nordström Black Holes in Higher Dimensions: Rainbow Gravity Background With General Uncertainty Principle
- Hawking Radiation of Vector Particles via Tunneling From 4-Dimensional And 5-Dimensional Black Holes
- Thermodynamics and Phase transition of Schwarzschild black hole in Gravity's Rainbow
- Thermodynamics of black holes in rainbow gravity