Shockwave S-matrix from Schwarzian quantum mechanics

Abstract Schwarzian quantum mechanics describes the collective IR mode of the SYK model and captures key features of 2D black hole dynamics. Exact results for its correlation functions were obtained in [1]. We compare these results with bulk gravity expectations. We find that the semi-classical limi...

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Main Authors: Ho Tat Lam, Thomas G. Mertens, Gustavo J. Turiaci, Herman Verlinde
Format: Article
Language:English
Published: SpringerOpen 2018-11-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP11(2018)182
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spelling doaj-7c6cf07aad1943088ef06db1bede62d32020-11-25T01:32:28ZengSpringerOpenJournal of High Energy Physics1029-84792018-11-0120181113810.1007/JHEP11(2018)182Shockwave S-matrix from Schwarzian quantum mechanicsHo Tat Lam0Thomas G. Mertens1Gustavo J. Turiaci2Herman Verlinde3Physics Department, Princeton UniversityPhysics Department, Princeton UniversityPhysics Department, Princeton UniversityPhysics Department, Princeton UniversityAbstract Schwarzian quantum mechanics describes the collective IR mode of the SYK model and captures key features of 2D black hole dynamics. Exact results for its correlation functions were obtained in [1]. We compare these results with bulk gravity expectations. We find that the semi-classical limit of the OTO four-point function exactly matches with the scattering amplitude obtained from the Dray-’t Hooft shockwave S $$ \mathcal{S} $$ -matrix. We show that the two point function of heavy operators reduces to the semi-classical saddle-point of the Schwarzian action. We also explain a previously noted match between the OTO four point functions and 2D conformal blocks. Generalizations to higher-point functions are discussed.http://link.springer.com/article/10.1007/JHEP11(2018)1822D GravityAdS-CFT CorrespondenceBlack HolesConformal Field Theory
collection DOAJ
language English
format Article
sources DOAJ
author Ho Tat Lam
Thomas G. Mertens
Gustavo J. Turiaci
Herman Verlinde
spellingShingle Ho Tat Lam
Thomas G. Mertens
Gustavo J. Turiaci
Herman Verlinde
Shockwave S-matrix from Schwarzian quantum mechanics
Journal of High Energy Physics
2D Gravity
AdS-CFT Correspondence
Black Holes
Conformal Field Theory
author_facet Ho Tat Lam
Thomas G. Mertens
Gustavo J. Turiaci
Herman Verlinde
author_sort Ho Tat Lam
title Shockwave S-matrix from Schwarzian quantum mechanics
title_short Shockwave S-matrix from Schwarzian quantum mechanics
title_full Shockwave S-matrix from Schwarzian quantum mechanics
title_fullStr Shockwave S-matrix from Schwarzian quantum mechanics
title_full_unstemmed Shockwave S-matrix from Schwarzian quantum mechanics
title_sort shockwave s-matrix from schwarzian quantum mechanics
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2018-11-01
description Abstract Schwarzian quantum mechanics describes the collective IR mode of the SYK model and captures key features of 2D black hole dynamics. Exact results for its correlation functions were obtained in [1]. We compare these results with bulk gravity expectations. We find that the semi-classical limit of the OTO four-point function exactly matches with the scattering amplitude obtained from the Dray-’t Hooft shockwave S $$ \mathcal{S} $$ -matrix. We show that the two point function of heavy operators reduces to the semi-classical saddle-point of the Schwarzian action. We also explain a previously noted match between the OTO four point functions and 2D conformal blocks. Generalizations to higher-point functions are discussed.
topic 2D Gravity
AdS-CFT Correspondence
Black Holes
Conformal Field Theory
url http://link.springer.com/article/10.1007/JHEP11(2018)182
work_keys_str_mv AT hotatlam shockwavesmatrixfromschwarzianquantummechanics
AT thomasgmertens shockwavesmatrixfromschwarzianquantummechanics
AT gustavojturiaci shockwavesmatrixfromschwarzianquantummechanics
AT hermanverlinde shockwavesmatrixfromschwarzianquantummechanics
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