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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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 |
_version_ |
1725081950923784192 |