Modifying horizon thermodynamics by surface tensions
arXiv:1608.02115
Abstract
The modified first laws of thermodynamics at the black hole horizon and the cosmological horizon of the Schwarzschild de Sitter black hole and the apparent horizon of the Friedmann-Robertson-Walker cosmology are derived by the surface tensions, respectively. The corresponding Smarr relations are obeyed. For the black hole, the cosmological constant is first treated as a fixed constant, and then as a variable associated to the pressure. The law at the apparent horizon takes the same form as that at the cosmological horizon, but is different from that at the black hole horizon. The positive temperatures guarantee the appearance of the worked terms in the modified laws at the cosmological and apparent horizons. While they can disappear at the black hole horizon.
12 pages, references added
References in corpus (13)
- Hawking Radiation of Apparent Horizon in a FRW Universe
- Critical phenomena and thermodynamic geometry of charged Gauss-Bonnet AdS black holes
- Thermodynamics of de Sitter Black Holes: Thermal Cosmological Constant
- Corrected Entropy-Area Relation and Modified Friedmann Equations
- Friedmann Equations and Thermodynamics of Apparent Horizons
- Einstein's equations as a thermodynamic identity: The cases of stationary axisymmetric horizons and evolving spherically symmetric horizons
- Mechanical First Law of Black Hole Spacetimes with Cosmological Constant and Its Application to Schwarzschild-de Sitter Spacetime
- Critical phenomena of static charged AdS black holes in conformal gravity
- P-V criticality of charged dilatonic black holes
- Phase transitions of hairy black holes in massive gravity and thermodynamic behavior of charged AdS black holes in an extended phase space
- Hawking radiation as tunneling for spherically symmetric black holes: A generalized treatment
- Ehrenfest scheme for complex thermodynamic systems in full phase space
- A unified thermodynamic picture of Hořava-Lifshitz black hole in arbitrary space time