Paradoxes before the paradox: surface gravity and the information loss problem

Fuente: arXiv
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Main Authors: Mann, Robert B., Murk, Sebastian, Terno, Daniel R.
Format: Preprint
Published: 2021
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author Mann, Robert B.
Murk, Sebastian
Terno, Daniel R.
author_facet Mann, Robert B.
Murk, Sebastian
Terno, Daniel R.
contents The information loss paradox is widely regarded as one of the biggest open problems in theoretical physics. Several classical and quantum features must be present to enable its formulation. First, an event horizon is needed to justify the objective status of tracing out degrees of freedom inside the black hole. Second, evaporation must be completed (or nearly completed) in finite time according to a distant observer, and thus the formation of the black hole should also occur in finite time. In spherical symmetry these requirements constrain the possible metrics strongly enough to obtain a unique black hole formation scenario and match their parameters with the semiclassical results. However, the two principal generalizations of surface gravity, the quantity that determines the Hawking temperature, do not agree with each other on the dynamical background. Neither can correspond to the emission of nearly-thermal radiation. We infer from this that the information loss problem cannot be consistently posed in its standard form.
format Preprint
id arxiv_https___arxiv_org_abs_2109_13939
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Paradoxes before the paradox: surface gravity and the information loss problem
Mann, Robert B.
Murk, Sebastian
Terno, Daniel R.
General Relativity and Quantum Cosmology
High Energy Physics - Theory
The information loss paradox is widely regarded as one of the biggest open problems in theoretical physics. Several classical and quantum features must be present to enable its formulation. First, an event horizon is needed to justify the objective status of tracing out degrees of freedom inside the black hole. Second, evaporation must be completed (or nearly completed) in finite time according to a distant observer, and thus the formation of the black hole should also occur in finite time. In spherical symmetry these requirements constrain the possible metrics strongly enough to obtain a unique black hole formation scenario and match their parameters with the semiclassical results. However, the two principal generalizations of surface gravity, the quantity that determines the Hawking temperature, do not agree with each other on the dynamical background. Neither can correspond to the emission of nearly-thermal radiation. We infer from this that the information loss problem cannot be consistently posed in its standard form.
title Paradoxes before the paradox: surface gravity and the information loss problem
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2109.13939