dyonic black holes in gravity's rainbow
arXiv:1812.01454 · doi:10.1016/j.nuclphysb.2018.11.019
Abstract
In this paper, we investigate thermodynamical structure of dyonic black holes in the presence of gravity's rainbow. We confirm that for super magnetized and highly pressurized scenarios, the number of black holes' phases is reduced to a single phase. In addition, due to specific coupling of rainbow functions, it is possible to track the effects of temporal and spatial parts of our setup on thermodynamical quantities/behaviors including equilibrium point, existence of multiple phases, possible phase transitions and conditions for having a uniform stable structure.
20 pages 10 figures
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- Gravitational Collapse for the K-essence Emergent Vaidya Spacetime
- Phase transition and entropic force of de Sitter black hole in massive gravity
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- Inflation from theories in gravity's rainbow
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- GUP corrected Casimir Wormholes with Electric Charge in Gravity
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- Gravity Rainbow Effects on Higher Curvature Modification of R2 inflation
- Observational Constraints on Asymptotic Safety Inflation in Gravity Rainbow