Literature DB >> 28949759

Slow Dynamics and Thermodynamics of Open Quantum Systems.

Vasco Cavina1, Andrea Mari1, Vittorio Giovannetti1.   

Abstract

We develop a perturbation theory of quantum (and classical) master equations with slowly varying parameters, applicable to systems which are externally controlled on a time scale much longer than their characteristic relaxation time. We apply this technique to the analysis of finite-time isothermal processes in which, differently from quasistatic transformations, the state of the system is not able to continuously relax to the equilibrium ensemble. Our approach allows one to formally evaluate perturbations up to arbitrary order to the work and heat exchange associated with an arbitrary process. Within first order in the perturbation expansion, we identify a general formula for the efficiency at maximum power of a finite-time Carnot engine. We also clarify under which assumptions and in which limit one can recover previous phenomenological results as, for example, the Curzon-Ahlborn efficiency.

Entities:  

Year:  2017        PMID: 28949759     DOI: 10.1103/PhysRevLett.119.050601

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  4 in total

1.  Efficiency of Harmonic Quantum Otto Engines at Maximal Power.

Authors:  Sebastian Deffner
Journal:  Entropy (Basel)       Date:  2018-11-15       Impact factor: 2.524

2.  Effect of Finite-Size Heat Source's Heat Capacity on the Efficiency of Heat Engine.

Authors:  Yu-Han Ma
Journal:  Entropy (Basel)       Date:  2020-09-08       Impact factor: 2.524

3.  Geometric Optimisation of Quantum Thermodynamic Processes.

Authors:  Paolo Abiuso; Harry J D Miller; Martí Perarnau-Llobet; Matteo Scandi
Journal:  Entropy (Basel)       Date:  2020-09-24       Impact factor: 2.524

4.  Simulating Finite-Time Isothermal Processes with Superconducting Quantum Circuits.

Authors:  Jin-Fu Chen; Ying Li; Hui Dong
Journal:  Entropy (Basel)       Date:  2021-03-16       Impact factor: 2.524

  4 in total

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