Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence
We study the decoherence process for an open quantum system that is classically chaotic (a quartic double well with harmonic driving coupled to a sea of harmonic oscillators). We carefully analyze the time dependence of the rate of entropy production showing that it has two relevant regimes: For sho...
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todo:paper_1063651X_v64_n5_p13_Monteoliva2023-10-03T16:01:36Z Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence Monteoliva, D. Paz, J.P. We study the decoherence process for an open quantum system that is classically chaotic (a quartic double well with harmonic driving coupled to a sea of harmonic oscillators). We carefully analyze the time dependence of the rate of entropy production showing that it has two relevant regimes: For short times it is proportional to the diffusion coefficient (fixed by the system-environment coupling strength); for longer times (but before equilibration) it is fixed by dynamical properties of the system (and is related to the Lyapunov exponent). The nature of the transition time between both regimes is investigated and the issue of quantum to classical correspondence is addressed. Finally, the impact of the interaction with the environment on coherent tunneling is analyzed. © 2001 The American Physical Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_1063651X_v64_n5_p13_Monteoliva |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
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R-134 |
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Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
description |
We study the decoherence process for an open quantum system that is classically chaotic (a quartic double well with harmonic driving coupled to a sea of harmonic oscillators). We carefully analyze the time dependence of the rate of entropy production showing that it has two relevant regimes: For short times it is proportional to the diffusion coefficient (fixed by the system-environment coupling strength); for longer times (but before equilibration) it is fixed by dynamical properties of the system (and is related to the Lyapunov exponent). The nature of the transition time between both regimes is investigated and the issue of quantum to classical correspondence is addressed. Finally, the impact of the interaction with the environment on coherent tunneling is analyzed. © 2001 The American Physical Society. |
format |
JOUR |
author |
Monteoliva, D. Paz, J.P. |
spellingShingle |
Monteoliva, D. Paz, J.P. Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
author_facet |
Monteoliva, D. Paz, J.P. |
author_sort |
Monteoliva, D. |
title |
Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
title_short |
Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
title_full |
Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
title_fullStr |
Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
title_full_unstemmed |
Decoherence in a classically chaotic quantum system: Entropy production and quantum-classical correspondence |
title_sort |
decoherence in a classically chaotic quantum system: entropy production and quantum-classical correspondence |
url |
http://hdl.handle.net/20.500.12110/paper_1063651X_v64_n5_p13_Monteoliva |
work_keys_str_mv |
AT monteolivad decoherenceinaclassicallychaoticquantumsystementropyproductionandquantumclassicalcorrespondence AT pazjp decoherenceinaclassicallychaoticquantumsystementropyproductionandquantumclassicalcorrespondence |
_version_ |
1807317849755090944 |