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Thermodynamics and efficiency of sequentially collisional Brownian particles: The role of drivings

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Author(s):
Fernando Filho, S. ; Akasaki, Bruno A. N. ; Noa, Carlos E. F. ; Cleuren, Bart ; Fiore, Carlos E.
Total Authors: 5
Document type: Journal article
Source: PHYSICAL REVIEW E; v. 106, n. 4, p. 13-pg., 2022-10-24.
Abstract

Brownian particles placed sequentially in contact with distinct thermal reservoirs and subjected to external driving forces are promising candidates for the construction of reliable engine setups. In this contribution, we address the role of driving forces for enhancing the collisional machine performance. Analytical expressions for thermodynamic quantities such as power output and efficiency are obtained for general driving schemes. A proper choice of these driving schemes substantially increases both power output and efficiency and extends the working regime. Maximizations of power and efficiency, whether with respect to the strength of the force, driving scheme, or both have been considered and exemplified for two kind of drivings: generic power-law and harmonic (sinusoidal) drivings. (AU)

FAPESP's process: 21/03372-2 - Stochastic thermodynamics of phase transitions and periodically driven systems
Grantee:Carlos Eduardo Fiore dos Santos
Support Opportunities: Regular Research Grants