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Thermalization and Chaos in 1+1d QFTs
<!--HTML-->Nonintegrable QFTs are expected to thermalize and exhibit emergence of hydrodynamics and chaos. In weakly coupled QFTs, kinetic theory captures local thermalization; such a versatile tool is absent away from the perturbative regime. I will present analytical and numerical results us...
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Lenguaje: | eng |
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2022
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Acceso en línea: | http://cds.cern.ch/record/2810870 |
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author | Delacrétaz, Luca |
author_facet | Delacrétaz, Luca |
author_sort | Delacrétaz, Luca |
collection | CERN |
description | <!--HTML-->Nonintegrable QFTs are expected to thermalize and exhibit emergence of hydrodynamics and chaos. In weakly coupled QFTs, kinetic theory captures local thermalization; such a versatile tool is absent away from the perturbative regime. I will present analytical and numerical results using nonperturbative methods to study thermalization at strong coupling. I will show how requiring causality in the thermal state leads to strong analytic constraints on the thermodynamics and out of equilibrium properties of any relativistic 1+1d QFT. I will then discuss Lightcone Conformal Truncation (LCT) as a powerful numerical tool to study thermalization of QFTs. Applied to $\phi^4$ theory in 1+1d, LCT reveals eigenstate thermalization and onset of random matrix universality at any nonzero coupling. Finally, I will discuss prospects for observing the emergence of hydrodynamics in QFTs using Hamiltonian truncation. |
id | cern-2810870 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28108702022-11-02T22:05:03Zhttp://cds.cern.ch/record/2810870engDelacrétaz, LucaThermalization and Chaos in 1+1d QFTsNonperturbative Methods in Quantum Field TheoryTH institutes<!--HTML-->Nonintegrable QFTs are expected to thermalize and exhibit emergence of hydrodynamics and chaos. In weakly coupled QFTs, kinetic theory captures local thermalization; such a versatile tool is absent away from the perturbative regime. I will present analytical and numerical results using nonperturbative methods to study thermalization at strong coupling. I will show how requiring causality in the thermal state leads to strong analytic constraints on the thermodynamics and out of equilibrium properties of any relativistic 1+1d QFT. I will then discuss Lightcone Conformal Truncation (LCT) as a powerful numerical tool to study thermalization of QFTs. Applied to $\phi^4$ theory in 1+1d, LCT reveals eigenstate thermalization and onset of random matrix universality at any nonzero coupling. Finally, I will discuss prospects for observing the emergence of hydrodynamics in QFTs using Hamiltonian truncation.oai:cds.cern.ch:28108702022 |
spellingShingle | TH institutes Delacrétaz, Luca Thermalization and Chaos in 1+1d QFTs |
title | Thermalization and Chaos in 1+1d QFTs |
title_full | Thermalization and Chaos in 1+1d QFTs |
title_fullStr | Thermalization and Chaos in 1+1d QFTs |
title_full_unstemmed | Thermalization and Chaos in 1+1d QFTs |
title_short | Thermalization and Chaos in 1+1d QFTs |
title_sort | thermalization and chaos in 1+1d qfts |
topic | TH institutes |
url | http://cds.cern.ch/record/2810870 |
work_keys_str_mv | AT delacretazluca thermalizationandchaosin11dqfts AT delacretazluca nonperturbativemethodsinquantumfieldtheory |