Deforming the Double Liouville String

Fuente: arXiv
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Hauptverfasser: Giribet, Gaston, Leston, Mauricio, Schmied, Pedro, Sivilotti, Bruno
Format: Preprint
Veröffentlicht: 2024
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author Giribet, Gaston
Leston, Mauricio
Schmied, Pedro
Sivilotti, Bruno
author_facet Giribet, Gaston
Leston, Mauricio
Schmied, Pedro
Sivilotti, Bruno
contents We consider a generalization of the double Liouville theory, which can be thought of as a two-parameter family of marginal deformations of the so-called Virasoro Minimal String (VMS). The latter consists of a timelike ($c_{-}<1$) and a spacelike ($c_{+}>25$) Liouville field theory formulated on a fluctuating Riemann surface. For the deformed theory, we compute the sphere partition function exactly in $1/c_{\pm}$ and at third order in the coupling constant ($λ$) that controls the deformation. We also discuss the analogous computation in the case of the Complex Liouville String (CLS) theory, which is defined as two spacelike Liouville theories with complex central charges $c_{\pm }=13\pm i\mathbb{R}_{>0}$. We show that the partition functions of VMS and CLS differ at leading order in $λ$ due to the presence of elliptic functions in the observables of the latter. Both VMS and CLS theories have recently been studied in relation to many interesting models, including the double scaled Sachdev-Ye-Kitaev model, matrix models, and de Sitter gravity in 2 and 3 dimensions. We comment on the interpretation of the marginal deformation in some of these contexts.
format Preprint
id arxiv_https___arxiv_org_abs_2412_18411
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Deforming the Double Liouville String
Giribet, Gaston
Leston, Mauricio
Schmied, Pedro
Sivilotti, Bruno
High Energy Physics - Theory
We consider a generalization of the double Liouville theory, which can be thought of as a two-parameter family of marginal deformations of the so-called Virasoro Minimal String (VMS). The latter consists of a timelike ($c_{-}<1$) and a spacelike ($c_{+}>25$) Liouville field theory formulated on a fluctuating Riemann surface. For the deformed theory, we compute the sphere partition function exactly in $1/c_{\pm}$ and at third order in the coupling constant ($λ$) that controls the deformation. We also discuss the analogous computation in the case of the Complex Liouville String (CLS) theory, which is defined as two spacelike Liouville theories with complex central charges $c_{\pm }=13\pm i\mathbb{R}_{>0}$. We show that the partition functions of VMS and CLS differ at leading order in $λ$ due to the presence of elliptic functions in the observables of the latter. Both VMS and CLS theories have recently been studied in relation to many interesting models, including the double scaled Sachdev-Ye-Kitaev model, matrix models, and de Sitter gravity in 2 and 3 dimensions. We comment on the interpretation of the marginal deformation in some of these contexts.
title Deforming the Double Liouville String
topic High Energy Physics - Theory
url https://arxiv.org/abs/2412.18411