On the duality of Schwarzschild-de Sitter spacetime and moving mirror
arXiv:2109.04147 · doi:10.1088/1361-6382/ac4b03
Abstract
The Schwarzschild-de Sitter (SdS) metric is the simplest spacetime solution in general relativity with both a black hole event horizon and a cosmological event horizon. Since the Schwarzschild metric is the most simple solution of Einstein's equations with spherical symmetry and the de Sitter metric is the most simple solution of Einstein's equations with a positive cosmological constant, the combination in the SdS metric defines an appropriate background geometry for semi-classical investigation of Hawking radiation with respect to past and future horizons. Generally, the black hole temperature is larger than that of the cosmological horizon, so there is heat flow from the smaller black hole horizon to the larger cosmological horizon, despite questions concerning the definition of the relative temperature of the black hole without a measurement by an observer sitting in an asymptotically flat spacetime. Here we investigate the accelerating boundary correspondence (ABC) of the radiation in SdS spacetime without such a problem. We have solved for the boundary dynamics, energy flux and asymptotic particle spectrum. The distribution of particles is globally non-thermal while asymptotically the radiation reaches equilibrium.
11 pages, 4 figures
References in corpus (22)
- Entanglement entropy in holographic moving mirror and Page curve
- Probing Hawking radiation through capacity of entanglement
- Entanglement entropy and negative energy in two dimensions
- On Horizonless Temperature with an Accelerating Mirror
- Slicing the Vacuum: New Accelerating Mirror Solutions of the Dynamical Casimir Effect
- Entanglement harvesting in the presence of a reflecting boundary
- The mirror at the edge of the universe: Reflections on an accelerated boundary correspondence with de Sitter cosmology
- Moving mirrors, Page curves and bulk entropies in AdS
- Hawking radiation by Kerr black holes and conformal symmetry
- Last gasp of a black hole: unitary evaporation implies non-monotonic mass loss
- Spacetime continuity and quantum information loss
- Short-distance contribution to the spectrum of Hawking radiation
- Black hole evaporation in de Sitter space
- Finite thermal particle creation of Casimir light
- Two-point functions with an invariant Planck scale and thermal effects
- Global Hawking Temperature of Schwarzschild-de Sitter Spacetime: a Topological Approach
- Radiation from an inertial mirror horizon
- Time evolution of entanglement entropy of moving mirrors influenced by strongly coupled quantum critical fields
- Analog Particle Production Model for General Classes of Taub-NUT Black Holes
- Qubit Motion as a Microscopic Model for the Dynamical Casimir Effect
- Holographic moving mirrors
- Particle production by a relativistic semitransparent mirror of finite size and thickness
Cited by in corpus (8)
- Unruh quantum Otto engine in the presence of a reflecting boundary
- Infrared Regularization and Finite Size Dynamics of Entanglement Entropy in Schwarzschild Black Hole
- Entanglement area law violation from field-curvature coupling
- Möbius Mirrors
- Upon the horizon's verge: Thermal particle creation between and approaching horizons
- Moving mirrors and event horizons in non-flat background geometry
- Quasinormal Modes and the Switchback Effect in Schwarzschild-de Sitter
- There and Back Again: Quantum Radiation from Round-trip Flying Mirrors