Constraints between entropy production and its fluctuations in nonthermal engines

Fuente: arXiv
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Main Authors: Acciai, Matteo, Tesser, Ludovico, Eriksson, Jakob, Sánchez, Rafael, Whitney, Robert S., Splettstoesser, Janine
Format: Preprint
Published: 2023
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author Acciai, Matteo
Tesser, Ludovico
Eriksson, Jakob
Sánchez, Rafael
Whitney, Robert S.
Splettstoesser, Janine
author_facet Acciai, Matteo
Tesser, Ludovico
Eriksson, Jakob
Sánchez, Rafael
Whitney, Robert S.
Splettstoesser, Janine
contents We analyze a mesoscopic conductor autonomously performing a thermodynamically useful task, such as cooling or producing electrical power, in a part of the system -- the working substance -- by exploiting another terminal or set of terminals -- the resource -- that contains a stationary nonthermal (nonequilibrium) distribution. Thanks to the nonthermal properties of the resource, on average no exchange of particles or energy with the working substance is required to fulfill the task. This resembles the action of a demon, as long as only average quantities are considered. Here, we go beyond a description based on average currents and investigate the role of fluctuations in such a system. We show that a minimum level of entropy fluctuations in the system is necessary, whenever one is exploiting a certain entropy production in the resource terminal to perform a useful task in the working substance. For concrete implementations of the demonic nonthermal engine in three- and four-terminal electronic conductors in the quantum Hall regime, we compare the resource fluctuations to the entropy production in the resource and to the useful engine output (produced power or cooling power).
format Preprint
id arxiv_https___arxiv_org_abs_2309_11570
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Constraints between entropy production and its fluctuations in nonthermal engines
Acciai, Matteo
Tesser, Ludovico
Eriksson, Jakob
Sánchez, Rafael
Whitney, Robert S.
Splettstoesser, Janine
Mesoscale and Nanoscale Physics
We analyze a mesoscopic conductor autonomously performing a thermodynamically useful task, such as cooling or producing electrical power, in a part of the system -- the working substance -- by exploiting another terminal or set of terminals -- the resource -- that contains a stationary nonthermal (nonequilibrium) distribution. Thanks to the nonthermal properties of the resource, on average no exchange of particles or energy with the working substance is required to fulfill the task. This resembles the action of a demon, as long as only average quantities are considered. Here, we go beyond a description based on average currents and investigate the role of fluctuations in such a system. We show that a minimum level of entropy fluctuations in the system is necessary, whenever one is exploiting a certain entropy production in the resource terminal to perform a useful task in the working substance. For concrete implementations of the demonic nonthermal engine in three- and four-terminal electronic conductors in the quantum Hall regime, we compare the resource fluctuations to the entropy production in the resource and to the useful engine output (produced power or cooling power).
title Constraints between entropy production and its fluctuations in nonthermal engines
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2309.11570