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Higher spin JT gravity and a matrix model dual

<!--HTML--><p>In this talk I will propose and discuss a generalization of the Saad-Shenker-Stanford duality between matrix models and JT gravity to the case in which the bulk includes higher spin fields. Using an PSL(N,R) BF theory we compute the disk and generalization of the trumpet pa...

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Autor principal: Kruthoff, Jorrit
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2807043
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author Kruthoff, Jorrit
author_facet Kruthoff, Jorrit
author_sort Kruthoff, Jorrit
collection CERN
description <!--HTML--><p>In this talk I will propose and discuss a generalization of the Saad-Shenker-Stanford duality between matrix models and JT gravity to the case in which the bulk includes higher spin fields. Using an PSL(N,R) BF theory we compute the disk and generalization of the trumpet partition function in this theory. Using an appropriate subspace of the moduli space of flat PSL(N,R) connections on a Riemann surface $\Sigma$ we propose a recipe for computing the cylinder contribution. This gives a $T^{N-1}$ behaviour at late times $T$, signaling a deviation from conventional random matrix theory. To account for this deviation, we propose that the bulk theory is dual to a matrix model consisting of N-1 commuting matrices associated to the N-1 conserved charges in the boundary theory. Due to its modified eigenvalue repulsion, the spectral two-point function reproduces the late time gravitational answer.&nbsp;</p>
id cern-2807043
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28070432022-11-02T22:05:13Zhttp://cds.cern.ch/record/2807043engKruthoff, JorritHigher spin JT gravity and a matrix model dualHigher spin JT gravity and a matrix model dualTH String Theory Seminar<!--HTML--><p>In this talk I will propose and discuss a generalization of the Saad-Shenker-Stanford duality between matrix models and JT gravity to the case in which the bulk includes higher spin fields. Using an PSL(N,R) BF theory we compute the disk and generalization of the trumpet partition function in this theory. Using an appropriate subspace of the moduli space of flat PSL(N,R) connections on a Riemann surface $\Sigma$ we propose a recipe for computing the cylinder contribution. This gives a $T^{N-1}$ behaviour at late times $T$, signaling a deviation from conventional random matrix theory. To account for this deviation, we propose that the bulk theory is dual to a matrix model consisting of N-1 commuting matrices associated to the N-1 conserved charges in the boundary theory. Due to its modified eigenvalue repulsion, the spectral two-point function reproduces the late time gravitational answer.&nbsp;</p>oai:cds.cern.ch:28070432022
spellingShingle TH String Theory Seminar
Kruthoff, Jorrit
Higher spin JT gravity and a matrix model dual
title Higher spin JT gravity and a matrix model dual
title_full Higher spin JT gravity and a matrix model dual
title_fullStr Higher spin JT gravity and a matrix model dual
title_full_unstemmed Higher spin JT gravity and a matrix model dual
title_short Higher spin JT gravity and a matrix model dual
title_sort higher spin jt gravity and a matrix model dual
topic TH String Theory Seminar
url http://cds.cern.ch/record/2807043
work_keys_str_mv AT kruthoffjorrit higherspinjtgravityandamatrixmodeldual