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Universal Upper Bound on Ergotropy and No-Go Theorem by the Eigenstate Thermalization Hypothesis

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arxiv 2406.11112 v3 pith:AHC2A4HX submitted 2024-06-17 quant-ph cond-mat.stat-mech

classification quant-phcond-mat.stat-mech
keywords quantumergotropythermalizationworkboundeigenstateextractionhypothesis
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We show that the maximum extractable work (ergotropy) from a quantum many-body system is constrained by local athermality of an initial state and local entropy decrease brought about by quantum operations. The obtained universal upper bound on ergotropy implies that the eigenstate thermalization hypothesis prohibits work extraction from energy eigenstates by means of finite-time unitary operations. This no-go property implies that Planck's principle, a form of the second law of thermodynamics, holds even for pure quantum states. Our result bridges two independently studied concepts of quantum thermodynamics, the second law and thermalization, via intrasystem correlations in many-body systems as a resource for work extraction.

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  1. Typical Positivity of Nonequilibrium Entropy Production for Pure States

    cond-mat.stat-mech 2024-11 conditional novelty 6.0 of 10

    For almost all pure states sampled from the Scrooge measure, entropy production is exponentially close to the ensemble value, so typical pure states obey the second law.

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