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非马尔可夫热操作提升量子热机性能

Non-Markovian thermal operations boosting the performance of quantum heat engines.

作者信息

Ptaszyński Krzysztof

机构信息

Institute of Molecular Physics, Polish Academy of Sciences, Mariana Smoluchowskiego 17, 60-179 Poznań, Poland.

出版信息

Phys Rev E. 2022 Jul;106(1-1):014114. doi: 10.1103/PhysRevE.106.014114.

Abstract

It is investigated whether non-Markovianity, i.e., the memory effects resulting from the coupling of the system to its environment, can be beneficial for the performance of quantum heat engines. Specifically, two physical models are considered. The first one is a well-known single-qubit Otto engine; the non-Markovian behavior is there implemented by replacing standard thermalization strokes with so-called extremal thermal operations which cannot be realized without the memory effects. The second one is a three-stroke engine in which the cycle consists of two extremal thermal operations and a single qubit rotation. It is shown that the non-Markovian Otto engine can generate more work-per-cycle for a given efficiency than its Markovian counterpart, whereas performance of both setups is superior to the three-stroke engine. Furthermore, both the non-Markovian Otto engine and the three-stroke engine can reduce the work fluctuations in comparison with the Markovian Otto engine, with their relative advantage depending on the performance target. This demonstrates the beneficial influence of non-Markovianity on both the average performance and the stability of operation of quantum heat engines.

摘要

研究了非马尔可夫性,即系统与其环境耦合产生的记忆效应,是否对量子热机的性能有益。具体而言,考虑了两个物理模型。第一个是著名的单量子比特奥托热机;通过用所谓的极值热操作取代标准热化冲程来实现非马尔可夫行为,而没有记忆效应就无法实现这种操作。第二个是三冲程热机,其循环由两个极值热操作和一次单量子比特旋转组成。结果表明,对于给定效率,非马尔可夫奥托热机每循环能产生比其马尔可夫对应热机更多的功,而两种设置的性能都优于三冲程热机。此外,与马尔可夫奥托热机相比,非马尔可夫奥托热机和三冲程热机都能减少功的波动,它们的相对优势取决于性能目标。这证明了非马尔可夫性对量子热机平均性能和运行稳定性的有益影响。

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