Holography for de Sitter bubble geometries

Fuente: arXiv
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Main Authors: Irakleous, Anastasios, Rondeau, François, Toumbas, Nicolaos
Format: Preprint
Published: 2025
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author Irakleous, Anastasios
Rondeau, François
Toumbas, Nicolaos
author_facet Irakleous, Anastasios
Rondeau, François
Toumbas, Nicolaos
contents We generalize the de Sitter static patch holographic proposal and the bilayer holographic entanglement entropy prescription to de Sitter geometries containing a bubble of smaller positive or vanishing cosmological constant. When the causal patch of an observer at the center of the bubble overlaps with the ``parent'' de Sitter region, we propose that the full spacetime can be holographically encoded on two holographic screens. The leading geometrical entanglement entropy between the two screens, which can be constant or time-dependent in some cases, never exceeds the Gibbons-Hawking entropy associated with the ``parent'' de Sitter space. When the causal patch of the observer at the center of the bubble is causally disconnected from the ``parent'' de Sitter region, the holographic proposal no longer applies, and more than two holographic screens are required to encode the whole spacetime.
format Preprint
id arxiv_https___arxiv_org_abs_2509_19423
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Holography for de Sitter bubble geometries
Irakleous, Anastasios
Rondeau, François
Toumbas, Nicolaos
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We generalize the de Sitter static patch holographic proposal and the bilayer holographic entanglement entropy prescription to de Sitter geometries containing a bubble of smaller positive or vanishing cosmological constant. When the causal patch of an observer at the center of the bubble overlaps with the ``parent'' de Sitter region, we propose that the full spacetime can be holographically encoded on two holographic screens. The leading geometrical entanglement entropy between the two screens, which can be constant or time-dependent in some cases, never exceeds the Gibbons-Hawking entropy associated with the ``parent'' de Sitter space. When the causal patch of the observer at the center of the bubble is causally disconnected from the ``parent'' de Sitter region, the holographic proposal no longer applies, and more than two holographic screens are required to encode the whole spacetime.
title Holography for de Sitter bubble geometries
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2509.19423