Unruh--DeWitt detectors in spherically symmetric dynamical space-times
arXiv:1111.6389 · doi:10.1007/s10773-011-1033-2
Abstract
In the present paper, Unruh--DeWitt detectors are used in order to investigate the issue of temperature associated with a spherically symmetric dynamical space-times. Firstly, we review the semi-classical tunneling method, then we introduce the Unruh--DeWitt detector approach. We show that for the generic static black hole case and the FRW de Sitter case, making use of peculiar Kodama trajectories, semiclassical and quantum field theoretic techniques give the same standard and well known thermal interpretation, with an associated temperature, corrected by appropriate Tolman factors. For a FRW space-time interpolating de Sitter space with the Einstein--de Sitter universe (that is a more realistic situation in the frame of CDM cosmologies), we show that the detector response splits into a de Sitter contribution plus a fluctuating term containing no trace of Boltzmann-like factors, but rather describing the way thermal equilibrium is reached in the late time limit. As a consequence, and unlike the case of black holes, the identification of the dynamical surface gravity of a cosmological trapping horizon as an effective temperature parameter seems lost, at least for our co-moving simplified detectors. The possibility remains that a detector performing a proper motion along a Kodama trajectory may register something more, in which case the horizon surface gravity would be associated more likely to vacuum correlations than to particle creation.
19 pages, to appear on IJTP. arXiv admin note: substantial text overlap with arXiv:1101.5254
References in corpus (16)
- The Unruh effect and its applications
- Tunnelling, Temperature and Taub-NUT Black Holes
- Quantum Tunneling and Back Reaction
- Tunnelling Methods and Hawking's radiation: achievements and prospects
- Temporal contribution to gravitational WKB-like calculations
- How often does the Unruh-DeWitt detector click? Regularisation by a spatial profile
- Subtleties in the quasi-classical calculation of Hawking radiation
- Fermion Tunneling from Dynamical Horizons
- Thermal radiation of various gravitational backgrounds
- On the Hawking radiation as tunneling for a class of dynamical black holes
- The generalized second law of thermodynamics in generalized gravity theories
- Lifetime of a massive particle in a de Sitter universe
- Unruh Effect for General Trajectories
- How hot are expanding universes ?
- Reply to Comments on "Invariance of the tunneling method for dynamical black holes" arXiv:0907.2020
- Thermodynamics for Kodama observer in general spherically symmetric spacetimes
Cited by in corpus (13)
- Regularized Lovelock gravity
- Multifaceted Schwinger effect in de Sitter space
- Quantum field theory in de Sitter and quasi-de Sitter spacetimes: Revisited
- Thermality, causality and the quantum-controlled Unruh-deWitt detector
- Quantum effects across dynamical horizons
- Unruh-DeWitt detectors in cosmological spacetimes
- Acceleration Radiation from Derivative-Coupled Atoms Falling in Modified Gravity Black Holes
- Remarks on distinguishability of Schwarzschild spacetime and thermal Minkowski spacetime using Resonance Casimir-Polder interaction
- Quantum detectors in generic non flat FLRW space-times
- Vacuum fluctuation of conformally coupled scalar field in FLRW space-times
- Hawking and Unruh radiation perception by different observers: applications of the effective temperature function (in Spanish)
- Quantum fields in gravity
- Vacuum Fluctuations as Quantum Probes in FRWL space-times