Local and global approaches to the thermodynamics of pure decoherence processes in open quantum systems

Fuente: arXiv
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Main Authors: Picatoste, Irene Ada, Colla, Alessandra, Breuer, Heinz-Peter
Format: Preprint
Published: 2025
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author Picatoste, Irene Ada
Colla, Alessandra
Breuer, Heinz-Peter
author_facet Picatoste, Irene Ada
Colla, Alessandra
Breuer, Heinz-Peter
contents We study the nonequilibrium thermodynamics of pure decoherence processes in open quantum systems coupled to a thermal reservoir. We review various definitions of central quantities, such as internal energy, work, heat and entropy production, developed within local and global approaches to quantum thermodynamics. Within local approaches thermodynamic quantities only refer to the open system's degrees of freedom, while in the global approaches certain quantities are defined by referring explicitly to the reservoir degrees of freedom. Employing a microscopic, analytically solvable model, we perform a comparison of these two perspectives, revealing substantial differences in the thermodynamic quantities and in the formulations of the first and second law. The main reason for these discrepancies is the fact that the global approaches involve the system-reservoir interaction which exchanges a large amount of energy with the environment, while the average open system energy is constant in time because the dynamics represents pure decoherence and does not affect the open system populations.
format Preprint
id arxiv_https___arxiv_org_abs_2506_11633
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Local and global approaches to the thermodynamics of pure decoherence processes in open quantum systems
Picatoste, Irene Ada
Colla, Alessandra
Breuer, Heinz-Peter
Quantum Physics
We study the nonequilibrium thermodynamics of pure decoherence processes in open quantum systems coupled to a thermal reservoir. We review various definitions of central quantities, such as internal energy, work, heat and entropy production, developed within local and global approaches to quantum thermodynamics. Within local approaches thermodynamic quantities only refer to the open system's degrees of freedom, while in the global approaches certain quantities are defined by referring explicitly to the reservoir degrees of freedom. Employing a microscopic, analytically solvable model, we perform a comparison of these two perspectives, revealing substantial differences in the thermodynamic quantities and in the formulations of the first and second law. The main reason for these discrepancies is the fact that the global approaches involve the system-reservoir interaction which exchanges a large amount of energy with the environment, while the average open system energy is constant in time because the dynamics represents pure decoherence and does not affect the open system populations.
title Local and global approaches to the thermodynamics of pure decoherence processes in open quantum systems
topic Quantum Physics
url https://arxiv.org/abs/2506.11633