Quantum thermodynamic cycles and quantum heat engines. II.

H. T. Quan
Phys. Rev. E 79, 041129 – Published 20 April 2009

Abstract

We study the quantum-mechanical generalization of force or pressure, and then we extend the classical thermodynamic isobaric process to quantum-mechanical systems. Based on these efforts, we are able to study the quantum version of thermodynamic cycles that consist of quantum isobaric processes, such as the quantum Brayton cycle and quantum Diesel cycle. We also consider the implementation of the quantum Brayton cycle and quantum Diesel cycle with some model systems, such as single particle in a one-dimensional box and single-mode radiation field in a cavity. These studies lay the microscopic (quantum-mechanical) foundation for Szilard-Zurek single-molecule engine.

    • Received 17 November 2008

    DOI:https://doi.org/10.1103/PhysRevE.79.041129

    Authors & Affiliations

    H. T. Quan

    • Theoretical Division, MS B213, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA

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    Issue

    Vol. 79, Iss. 4 — April 2009

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