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Main Authors: Francica, Gianluca, Dell'Anna, Luca
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2311.14489
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author Francica, Gianluca
Dell'Anna, Luca
author_facet Francica, Gianluca
Dell'Anna, Luca
contents Work extraction in quantum finite systems is an important issue in quantum thermodynamics. The optimal work extracted is called ergotropy, and it is achieved by maximizing the average work extracted over all the unitary cycles. However, an agent that is non-neutral to risk is affected by fluctuations and should extract work by following the expected utility hypothesis. Thus, we investigate the optimal work extraction performed by a risk non-neutral agent by maximizing the average utility function over all the unitary cycles. We mainly focus on initial states that are incoherent with respect to the energy basis, achieving a probability distribution of work. In this case we show how the optimal work extraction will be performed with an incoherent unitary transformation, namely a permutation of the energy basis, which depends on the risk aversion of the agent. We give several examples, in particular also the work extraction from an ensemble of quantum batteries is examined. Furthermore, we also investigate how work extraction is affected by the presence of initial quantum coherence in the energy basis by considering a quasiprobability distribution of work.
format Preprint
id arxiv_https___arxiv_org_abs_2311_14489
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Optimal work extraction from quantum batteries based on the expected utility hypothesis
Francica, Gianluca
Dell'Anna, Luca
Quantum Physics
Statistical Mechanics
Work extraction in quantum finite systems is an important issue in quantum thermodynamics. The optimal work extracted is called ergotropy, and it is achieved by maximizing the average work extracted over all the unitary cycles. However, an agent that is non-neutral to risk is affected by fluctuations and should extract work by following the expected utility hypothesis. Thus, we investigate the optimal work extraction performed by a risk non-neutral agent by maximizing the average utility function over all the unitary cycles. We mainly focus on initial states that are incoherent with respect to the energy basis, achieving a probability distribution of work. In this case we show how the optimal work extraction will be performed with an incoherent unitary transformation, namely a permutation of the energy basis, which depends on the risk aversion of the agent. We give several examples, in particular also the work extraction from an ensemble of quantum batteries is examined. Furthermore, we also investigate how work extraction is affected by the presence of initial quantum coherence in the energy basis by considering a quasiprobability distribution of work.
title Optimal work extraction from quantum batteries based on the expected utility hypothesis
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2311.14489