Solving information loss paradox via Euclidean path integral

Fuente: arXiv
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Autores principales: Chen, Pisin, Sasaki, Misao, Yeom, Dong-han, Yoon, Junggi
Formato: Preprint
Publicado: 2021
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author Chen, Pisin
Sasaki, Misao
Yeom, Dong-han
Yoon, Junggi
author_facet Chen, Pisin
Sasaki, Misao
Yeom, Dong-han
Yoon, Junggi
contents The information loss paradox associated with black hole Hawking evaporation is an unresolved problem in modern theoretical physics. In this paper, we revisit the entanglement entropy via the Euclidean path integral (EPI) of the quantum state and allow for the branching of semi-classical histories along the Lorentzian evolution. We posit that there exist at least two histories that contribute to EPI, where one is an information-losing history while the other is information-preserving. At early times, the former dominates EPI, while at late times the latter becomes dominant. By so doing we recover the essence of the Page curve and thus the unitarity, albeit with the turning point, i.e., the Page time, much shifted toward the late time. One implication of this modified Page curve is that the entropy bound may thus be violated. We comment on the similarity and difference between our approach and that of the replica wormholes and the island conjecture.
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id arxiv_https___arxiv_org_abs_2111_01005
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Solving information loss paradox via Euclidean path integral
Chen, Pisin
Sasaki, Misao
Yeom, Dong-han
Yoon, Junggi
High Energy Physics - Theory
General Relativity and Quantum Cosmology
The information loss paradox associated with black hole Hawking evaporation is an unresolved problem in modern theoretical physics. In this paper, we revisit the entanglement entropy via the Euclidean path integral (EPI) of the quantum state and allow for the branching of semi-classical histories along the Lorentzian evolution. We posit that there exist at least two histories that contribute to EPI, where one is an information-losing history while the other is information-preserving. At early times, the former dominates EPI, while at late times the latter becomes dominant. By so doing we recover the essence of the Page curve and thus the unitarity, albeit with the turning point, i.e., the Page time, much shifted toward the late time. One implication of this modified Page curve is that the entropy bound may thus be violated. We comment on the similarity and difference between our approach and that of the replica wormholes and the island conjecture.
title Solving information loss paradox via Euclidean path integral
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2111.01005