The phase of de Sitter higher spin gravity

Fuente: arXiv
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Main Authors: Giombi, Simone, Sun, Zimo
Format: Preprint
Published: 2026
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author Giombi, Simone
Sun, Zimo
author_facet Giombi, Simone
Sun, Zimo
contents The one-loop Euclidean partition function on the sphere is known to exhibit a nontrivial phase for massless fields of spin greater than one. Such a phase appears to be in tension with a state counting interpretation of the partition function and its relation to the de Sitter entropy. It has been recently argued that the phase associated with the gravitational path integral can be cancelled by including the contribution of an observer. In this note, we compute the total phase of Vasiliev higher spin gravity on the sphere by summing over the contributions of all spins. We evaluate the resulting infinite sum using two different regularization schemes, obtaining consistent results. We find that for the non-minimal Vasiliev theory, which includes massless fields of all integer spins, the total phase vanishes in all dimensions. This result suggests that the sphere partition function of these theories may be consistent with a counting interpretation, without explicitly including an observer.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15257
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The phase of de Sitter higher spin gravity
Giombi, Simone
Sun, Zimo
High Energy Physics - Theory
The one-loop Euclidean partition function on the sphere is known to exhibit a nontrivial phase for massless fields of spin greater than one. Such a phase appears to be in tension with a state counting interpretation of the partition function and its relation to the de Sitter entropy. It has been recently argued that the phase associated with the gravitational path integral can be cancelled by including the contribution of an observer. In this note, we compute the total phase of Vasiliev higher spin gravity on the sphere by summing over the contributions of all spins. We evaluate the resulting infinite sum using two different regularization schemes, obtaining consistent results. We find that for the non-minimal Vasiliev theory, which includes massless fields of all integer spins, the total phase vanishes in all dimensions. This result suggests that the sphere partition function of these theories may be consistent with a counting interpretation, without explicitly including an observer.
title The phase of de Sitter higher spin gravity
topic High Energy Physics - Theory
url https://arxiv.org/abs/2601.15257