paper

Page curves and Entanglement Islands for the Step-Function Vaidya Model of Evaporating Black Holes

arXiv:2302.02379 · doi:10.1007/JHEP05(2023)042

Abstract

It was proposed recently that the fine-grained entropy of the Hawking radiation can be expressed by the semiclassical island formula, which reproduces the unitary Page curve. In this paper, we choose the ``in'' vacuum state and apply the quantum extremal surface construction to study the Page curve for the step-function Vaidya model of evaporating black holes in four dimensions, which is produced by the spherical null shells. Metrics of the three regions of this spacetimes are obtained. In addition, the entanglement islands for the step-function Vaidya model of evaporating black holes at very late times are studied. When cutoff surface is located in Minkowski region III with at very late times, we find that the location of the boundary of island depends on the value of . Specifically, is inside, at or outside the horizon when is less than, equal to or larger than zero respectively. Moreover, when cutoff surface is located in Minkowski region III with after the black hole evaporates completely, we find that entanglement island still exists and is located on an equal-time Cauchy surface of the observer when .

29 pages, 12 figures, improvements to presentation, references added, and new content added in appendix to comment about the stress-energy tensor of the matter field, published version in JHEP

References in corpus (3)