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Thermodynamics of underdamped Brownian collisional engines: General features and resonant phenomena.

作者信息

Forão Gustavo A L, Filho Fernando S, Akasaki Bruno A N, Fiore Carlos E

机构信息

<a href="https://ror.org/036rp1748">Universidade de São Paulo, Instituto de Física</a>, Rua do Matão, 1371, 05508-090 São Paulo, SP, Brazil.

<a href="https://ror.org/04nbhqj75">UHasselt</a>, Faculty of Sciences, Theory Lab, Agoralaan, 3590 Diepenbeek, Belgium.

出版信息

Phys Rev E. 2024 Nov;110(5-1):054125. doi: 10.1103/PhysRevE.110.054125.

DOI:10.1103/PhysRevE.110.054125
PMID:39690699
Abstract

Collisional Brownian engines have been proposed as alternatives to nonequilibrium nanoscale engines. However, most studies have focused on the simpler overdamped case, leaving the role of inertia much less explored. In this work, we introduce the idea of collisional engines to underdamped Brownian particles, where at each stage the particle is sequentially subjected to a distinct driving force. A careful comparison between the performance of underdamped and overdamped Brownian work-to-work engines has been undertaken. The results show that underdamped Brownian engines generally outperform their overdamped counterparts. A key difference is the presence of a resonant regime in underdamped engines, in which both efficiency and power output are enhanced across a broad set of parameters. Our study highlights the importance of carefully selecting dynamics and driving protocols to achieve optimal engine performance.

摘要

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