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混合不可区分的系统会导致量子吉布斯佯谬。

Mixing indistinguishable systems leads to a quantum Gibbs paradox.

作者信息

Yadin Benjamin, Morris Benjamin, Adesso Gerardo

机构信息

School of Mathematical Sciences and Centre for the Mathematics and Theoretical Physics of Quantum Non-Equilibrium Systems, University Park, University of Nottingham, Nottingham, UK.

Wolfson College, University of Oxford, Oxford, UK.

出版信息

Nat Commun. 2021 Mar 5;12(1):1471. doi: 10.1038/s41467-021-21620-7.

Abstract

The classical Gibbs paradox concerns the entropy change upon mixing two gases. Whether an observer assigns an entropy increase to the process depends on their ability to distinguish the gases. A resolution is that an "ignorant" observer, who cannot distinguish the gases, has no way of extracting work by mixing them. Moving the thought experiment into the quantum realm, we reveal new and surprising behaviour: the ignorant observer can extract work from mixing different gases, even if the gases cannot be directly distinguished. Moreover, in the macroscopic limit, the quantum case diverges from the classical ideal gas: as much work can be extracted as if the gases were fully distinguishable. We show that the ignorant observer assigns more microstates to the system than found by naive counting in semiclassical statistical mechanics. This demonstrates the importance of accounting for the level of knowledge of an observer, and its implications for genuinely quantum modifications to thermodynamics.

摘要

经典吉布斯佯谬涉及两种气体混合时的熵变。观察者是否将熵增加归因于该过程取决于他们区分这些气体的能力。一种解决方案是,一个“无知”的观察者,即无法区分这些气体的观察者,没有办法通过混合它们来提取功。将这个思想实验推广到量子领域,我们揭示了新的、令人惊讶的行为:即使气体不能直接区分,无知的观察者也可以从混合不同气体中提取功。此外,在宏观极限下,量子情况与经典理想气体不同:可以提取的功与气体完全可区分时一样多。我们表明,无知的观察者为系统分配的微观状态比半经典统计力学中简单计数所发现的要多。这证明了考虑观察者的知识水平的重要性,以及它对热力学真正的量子修正的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eba/7935879/e0dc3643a9ac/41467_2021_21620_Fig1_HTML.jpg

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