Thermal radiation from Lorentzian traversable wormholes
arXiv:0907.4055 · doi:10.1103/PhysRevD.80.024007
Abstract
In this paper we show that, analogously to as it occurs for black holes, there exist three well-defined laws for Lorentzian wormhole thermodynamics and that these laws are related with a thermal phantom-like radiation process coming from the wormhole throat. It is argued that the existence of wormholes could be manifested by means such a radiation. These results are obtained by analyzing the Hayward formalism of spherically symmetric solutions containing trapping horizons, the phenomenon of phantom accretion onto wormholes and the development of phantom thermodynamics.
References in corpus (1)
Cited by in corpus (15)
- Tunneling of Vector Particles from Lorentzian Wormholes in 3+1 Dimensions
- Wormholes minimally violating the null energy condition
- Gravitinos Tunneling From Traversable Lorentzian Wormholes
- Quantum gravity correction to Hawking radiation of the 2+1 dimensional wormhole
- Modified particle dynamics and thermodynamics in a traversable wormhole in bumblebee gravity
- Observing other universe through ringholes and Klein-bottle holes
- Isotropic extensions of the vacuum solutions in general relativity
- A dual null formalism for the collapse of fluids in a cosmological background
- Does violation of Cosmic No-hair Conjecture guarantee the existence of Wormhole?
- Thermodynamics of dynamical wormholes
- Thermodynamics of an Evolving Lorentzian Wormhole with Entropy Corrections
- (2+1)-dimensional Static Cyclic Symmetric Traversable Wormhole: Quasinormal Modes and Causality
- Dynamical and thermodynamical stability of a charged thin-shell wormhole
- Unified first law for traversable wormholes in non-minimal coupling of curvature and matter
- Dynamics of Dissipative Gravitational Collapse in the Morris-Thorne Wormhole Metric: One Scenario -- Several Outcomes