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Main Authors: Chang, Jing-Cheng, He, Yang, Liu, Yu-Xiao, Sun, Yuan
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2511.16098
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author Chang, Jing-Cheng
He, Yang
Liu, Yu-Xiao
Sun, Yuan
author_facet Chang, Jing-Cheng
He, Yang
Liu, Yu-Xiao
Sun, Yuan
contents In de Sitter (dS) holography, both the dS/CFT correspondence and the dS static patch holography have been extensively studied. In these two holographic frameworks, the dual field theories are defined on spacelike and timelike boundaries, respectively, where the inward motion of the holographic boundary into the bulk corresponds to the $T\bar{T}$ and $T\bar{T}+Λ_2$ deformations in the respective dual field theories. In this work, we develop a unified framework for these two dS holographic models by introducing a composite flow that incorporates both $T\bar{T}$ and $T\bar{T}+Λ_2$ deformations. We propose that this composite flow corresponds to the inward motion of a spacelike boundary from the asymptotic infinity of dS spacetime, traversing the cosmological horizon and approaching the worldline of a static observer. This proposal is supported by the computation of the quasi-local energy and the holographic entanglement entropy within the dS static spacetime and its extended geometry.
format Preprint
id arxiv_https___arxiv_org_abs_2511_16098
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Toward a Unified de Sitter Holography: A Composite $T\bar{T}$ and $T\bar{T}+Λ_2$ Flow
Chang, Jing-Cheng
He, Yang
Liu, Yu-Xiao
Sun, Yuan
High Energy Physics - Theory
In de Sitter (dS) holography, both the dS/CFT correspondence and the dS static patch holography have been extensively studied. In these two holographic frameworks, the dual field theories are defined on spacelike and timelike boundaries, respectively, where the inward motion of the holographic boundary into the bulk corresponds to the $T\bar{T}$ and $T\bar{T}+Λ_2$ deformations in the respective dual field theories. In this work, we develop a unified framework for these two dS holographic models by introducing a composite flow that incorporates both $T\bar{T}$ and $T\bar{T}+Λ_2$ deformations. We propose that this composite flow corresponds to the inward motion of a spacelike boundary from the asymptotic infinity of dS spacetime, traversing the cosmological horizon and approaching the worldline of a static observer. This proposal is supported by the computation of the quasi-local energy and the holographic entanglement entropy within the dS static spacetime and its extended geometry.
title Toward a Unified de Sitter Holography: A Composite $T\bar{T}$ and $T\bar{T}+Λ_2$ Flow
topic High Energy Physics - Theory
url https://arxiv.org/abs/2511.16098