Rainbow Oppenheimer-Snyder collapse and the entanglement entropy production
arXiv:2303.12708 · doi:10.1103/PhysRevD.108.026016
Abstract
The dust ball collapse is studied in the context of the "rainbow metric" approach (where the matter content is supplemented with a scalar field perturbation) to the Oppenheimer-Snyder collapse scenario within the framework of loop quantum cosmology. The global spacetime structure is determined for this scenario and subsequently used to evaluate the entanglement entropy via a slight adaptation of existing formulas. The resulting model is shown to qualitatively resemble the Reissner-Nordström black hole spacetime, in particular, it still contains singularities, which allows us to define the entropy only for portions of the null infinity. The consequence of these results for the black hole information loss paradox is discussed. Furthermore, the results in presence of the scalar field are used in discussion regarding the viability of the selected scenario, in particular, the assumption of stationarity used to determine the exterior metric.
BibTex, 18 pages, 5 figures
References in corpus (15)
- Quantum Nature of the Big Bang
- Quantum Nature of the Big Bang: An Analytical and Numerical Investigation
- Black hole evaporation: A paradigm
- Loop Quantum Dynamics of the Schwarzschild Interior
- Quantum Oppenheimer-Snyder and Swiss Cheese models
- Black holes in loop quantum gravity: the complete space-time
- Spherically Symmetric Quantum Geometry: States and Basic Operators
- From black holes to white holes: a quantum gravitational, symmetric bounce
- Quantum field theory on a cosmological, quantum space-time
- Entanglement entropy and negative energy in two dimensions
- On the geometry of the black-to-white hole transition within a single asymptotic region
- Entanglement entropy production in gravitational collapse: covariant regularization and solvable models
- The End of a Black Hole's Evaporation -- Part II
- Causal Structure of a recent Loop Quantum Gravity Black Hole Collapse Model
- Rainbow Black Hole From Quantum Gravitational Collapse
Cited by in corpus (13)
- Black hole image encoding quantum gravity information
- Gravitational collapse in effective loop quantum gravity: beyond marginally bound configurations
- Shell-crossings and shock formation during gravitational collapse in effective loop quantum gravity
- Spin foam amplitude of the black-to-white hole transition
- Polar perturbations in Kantowski-Sachs spacetimes and hybrid quantum cosmology
- Stellar collapse with pressure in effective loop quantum gravity
- Causal structure of nonhomogeneous dust collapse in effective loop quantum gravity
- On weak solutions in Einstein theory and beyond
- Cosmic inflation prevents singularity formation in collapse into a Hayward black hole
- Quantum dust collapse with cosmological constant and methods for constructing conformal diagrams
- Quantum gravitational stellar evolution beyond shell-crossing singularities
- Effective LQG-inspired dynamics of a thin shell and the fate of a collapsing star
- A loop quantization of the marginally bound Lemaître-Tolman-Bondi dust model