Holographic heat engine with momentum relaxation
arXiv:1710.09054 · doi:10.1007/s11433-017-9185-9
Abstract
We investigate the heat engine defined via black hole with momentum relaxation, which is introduced by massless axion fields. We first study the extended thermodynamical properties of the black hole and then apply it to define a heat engine. Then, we analyze how the momentum relaxation affects the efficiency of the heat engine in the limit of high temperature. We find that depending on the schemes of specified parameters in the engine circle, the influence of momentum relaxation on the efficiency of the heat engine behaves novelly, and the qualitative behaviors do depend on the dimension of the gravity theory.
11 pages, 6 figures
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Cited by in corpus (12)
- Joule-Thomson expansion in AdS black holes with momentum relaxation
- Circular Motion of Charged Particles near Charged Black Hole
- Thermodynamic geometry and complexity of black holes in theories with broken translational invariance
- A Note on Critical Nonlinearly Charged Black Holes
- Benchmarking Black Hole Heat Engines, II
- Phase transition and heat engine efficiency of phantom AdS black holes
- Holographic subregion complexity under thermal quench in Einstein-Maxwell-Axions theory with momentum relaxation
- Holographic complexity for black branes with momentum relaxation
- Holographic heat engine in Horndeski model with the -essence sector
- Modified Cosmic Chaplygin AdS Black Hole
- Revisiting black hole thermodynamics in massive gravity: charged particle absorption and shell of dust falling
- Probes of holographic thermalization in a simple model with momentum relaxation