Cargando…

Holographic thermal correlators from supersymmetric instantons

We present an exact formula for the thermal scalar two-point function in four-dimensional holographic conformal field theories. The problem of finding it reduces to the analysis of the wave equation on the AdS-Schwarzschild background. The two-point function is computed from the connection coefficie...

Descripción completa

Detalles Bibliográficos
Autores principales: Dodelson, Matthew, Grassi, Alba, Iossa, Cristoforo, Panea Lichtig, Daniel, Zhiboedov, Alexander
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.21468/SciPostPhys.14.5.116
http://cds.cern.ch/record/2812675
_version_ 1780973354752147456
author Dodelson, Matthew
Grassi, Alba
Iossa, Cristoforo
Panea Lichtig, Daniel
Zhiboedov, Alexander
author_facet Dodelson, Matthew
Grassi, Alba
Iossa, Cristoforo
Panea Lichtig, Daniel
Zhiboedov, Alexander
author_sort Dodelson, Matthew
collection CERN
description We present an exact formula for the thermal scalar two-point function in four-dimensional holographic conformal field theories. The problem of finding it reduces to the analysis of the wave equation on the AdS-Schwarzschild background. The two-point function is computed from the connection coefficients of the Heun equation, which can be expressed in terms of the Nekrasov-Shatashvili partition function of an $SU(2)$ supersymmetric gauge theory with four fundamental hypermultiplets. The result is amenable to numerical evaluation upon truncating the number of instantons in the convergent expansion of the partition function. We also examine it analytically in various limits. At large spin the instanton expansion of the thermal two-point function directly maps to the light-cone bootstrap analysis of the heavy-light four-point function. Using this connection, we compute the OPE data of heavy-light double-twist operators. We compare our prediction to the perturbative results available in the literature and find perfect agreement.
id cern-2812675
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28126752023-07-30T02:58:25Zdoi:10.21468/SciPostPhys.14.5.116http://cds.cern.ch/record/2812675engDodelson, MatthewGrassi, AlbaIossa, CristoforoPanea Lichtig, DanielZhiboedov, AlexanderHolographic thermal correlators from supersymmetric instantonsmath.MPMathematical Physics and Mathematicsmath-phMathematical Physics and Mathematicsgr-qcGeneral Relativity and Cosmologyhep-thParticle Physics - TheoryWe present an exact formula for the thermal scalar two-point function in four-dimensional holographic conformal field theories. The problem of finding it reduces to the analysis of the wave equation on the AdS-Schwarzschild background. The two-point function is computed from the connection coefficients of the Heun equation, which can be expressed in terms of the Nekrasov-Shatashvili partition function of an $SU(2)$ supersymmetric gauge theory with four fundamental hypermultiplets. The result is amenable to numerical evaluation upon truncating the number of instantons in the convergent expansion of the partition function. We also examine it analytically in various limits. At large spin the instanton expansion of the thermal two-point function directly maps to the light-cone bootstrap analysis of the heavy-light four-point function. Using this connection, we compute the OPE data of heavy-light double-twist operators. We compare our prediction to the perturbative results available in the literature and find perfect agreement.We present an exact formula for the thermal scalar two-point function in four-dimensional holographic conformal field theories. The problem of finding it reduces to the analysis of the wave equation on the AdS-Schwarzschild background. The two-point function is computed from the connection coefficients of the Heun equation, which can be expressed in terms of the Nekrasov-Shatashvili partition function of an SU(2) supersymmetric gauge theory with four fundamental hypermultiplets. The result is amenable to numerical evaluation upon truncating the number of instantons in the convergent expansion of the partition function. We also examine it analytically in various limits. At large spin the instanton expansion of the thermal two-point function directly maps to the light-cone bootstrap analysis of the heavy-light four-point function. Using this connection, we compute the OPE data of heavy-light double-twist operators. We compare our prediction to the perturbative results available in the literature and find perfect agreement.arXiv:2206.07720CERN-TH-2022-095oai:cds.cern.ch:28126752022-06-15
spellingShingle math.MP
Mathematical Physics and Mathematics
math-ph
Mathematical Physics and Mathematics
gr-qc
General Relativity and Cosmology
hep-th
Particle Physics - Theory
Dodelson, Matthew
Grassi, Alba
Iossa, Cristoforo
Panea Lichtig, Daniel
Zhiboedov, Alexander
Holographic thermal correlators from supersymmetric instantons
title Holographic thermal correlators from supersymmetric instantons
title_full Holographic thermal correlators from supersymmetric instantons
title_fullStr Holographic thermal correlators from supersymmetric instantons
title_full_unstemmed Holographic thermal correlators from supersymmetric instantons
title_short Holographic thermal correlators from supersymmetric instantons
title_sort holographic thermal correlators from supersymmetric instantons
topic math.MP
Mathematical Physics and Mathematics
math-ph
Mathematical Physics and Mathematics
gr-qc
General Relativity and Cosmology
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.21468/SciPostPhys.14.5.116
http://cds.cern.ch/record/2812675
work_keys_str_mv AT dodelsonmatthew holographicthermalcorrelatorsfromsupersymmetricinstantons
AT grassialba holographicthermalcorrelatorsfromsupersymmetricinstantons
AT iossacristoforo holographicthermalcorrelatorsfromsupersymmetricinstantons
AT panealichtigdaniel holographicthermalcorrelatorsfromsupersymmetricinstantons
AT zhiboedovalexander holographicthermalcorrelatorsfromsupersymmetricinstantons