Radiation from collapsing shells, semiclassical backreaction and black hole formation
arXiv:0906.1768 · doi:10.1103/PhysRevD.80.044011
Abstract
We provide a detailed analysis of quantum field theory around a collapsing shell and discuss several conceptual issues related to the emission of radiation flux and formation of black holes. Explicit calculations are performed using a model for a collapsing shell which turns out to be analytically solvable. We use the insights gained in this model to draw reliable conclusions regarding more realistic models. We first show that any shell of mass which collapses to a radius close to will emit approximately thermal radiation for a period of time. In particular, a shell which collapses from some initial radius to a final radius (where ) without forming a black hole, will emit thermal radiation during the period . Later on (), the flux from such a shell will decay to zero exponentially. We next study the effect of backreaction computed using the vacuum expectation value of the stress tensor on the collapse. We find that, in any realistic collapse scenario, the backreaction effects do \emph{not} prevent the formation of the event horizon. The time at which the event horizon is formed is, of course, delayed due to the radiated flux -- which decreases the mass of the shell -- but this effect is not sufficient to prevent horizon formation. We also clarify several conceptual issues and provide pedagogical details of the calculations in the Appendices to the paper.
26 pages, 6 figures, revtex4; v2 -- minor reformatting, some typos fixed, one reference added, to appear in PRD
References in corpus (6)
- A Primer for Black Hole Quantum Physics
- Fate of gravitational collapse in semiclassical gravity
- Observation of Incipient Black Holes and the Information Loss Problem
- Quantum Radiation from Quantum Gravitational Collapse
- Properties of Black Hole Radiation From Tunnelling
- Construction of a Penrose Diagram for a Spatially Coherent Evaporating Black Hole
Cited by in corpus (41)
- Testing the nature of dark compact objects: a status report
- Thermodynamical Aspects of Gravity: New insights
- Role of evaporation in gravitational collapse
- New perspectives on Hawking radiation
- A quantum peek inside the black hole event horizon
- Pre-Hawking radiation cannot prevent the formation of apparent horizon
- Entanglement entropy production in gravitational collapse: covariant regularization and solvable models
- Obstruction of black hole singularity by quantum field theory effects
- Quantum fields during black hole formation: How good an approximation is the Unruh state?
- Black hole kinematics: the "in"-vacuum energy density and flux for different observers
- On gravastar formation: What can be the evidence of a black hole?
- Black hole evaporation and semiclassical thin shell collapse
- Energy-momentum tensor and metric near the Schwarzschild sphere
- Gravity and Quantum Theory: Domains of Conflict and Contact
- Astrophysical Black Hole horizons in a cosmological context: Nature and possible consequences on Hawking Radiation
- Self-consistent description of a spherically-symmetric gravitational collapse
- Universal properties of the near-horizon geometry
- Kerr-Vaidya black holes
- Paradoxes before the paradox: surface gravity and the information loss problem
- Semiclassical gravity effects near horizon formation
- Transition to light-like trajectories in thin shell dynamics
- Particle creation in gravitational collapse to a horizonless compact object
- Astrophysical black holes may radiate, but they do not evaporate
- A Vaidya-type spacetime with no singularities
- Semiclassical environment of collapsing shells
- Radiative gravastar with Gibbons-Hawking temperature
- Burst particle creation in gravitational collapse to a horizonless compact object
- Quantum vacuum effects on the formation of black holes
- Physical black holes in semiclassical gravity
- Quantum Collapse of a Thin Shell Revisited
- Radiative gravastar with thermal spectrum; Sudden vacuum condensation without gravitational collapse
- Asymptotic States of Black Holes in KMY Model
- Density matrix of radiation of black hole with fluctuating horizon
- Radially falling test particle approaching an evaporating black hole
- Proper time Quantization of a Thin Shell
- Anomaly induced quantum correction to charged black holes; geometry and thermodynamics
- Observables in quantum field theory on a collapsing black hole background
- Black holes and their horizons in semiclassical and modified theories of gravity
- The notes on thin shells
- On the paradox of Hawking radiation in a maximally extended Schwarzschild solution
- A quantum thin shell surrounding a Black Hole