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从非平衡稳态中悬浮纳米颗粒的动力学弛豫。

Dynamic relaxation of a levitated nanoparticle from a non-equilibrium steady state.

机构信息

ICFO-Institut de Ciencies Fotoniques, Mediterranean Technology Park, 08860 Castelldefels (Barcelona), Spain.

1] ICFO-Institut de Ciencies Fotoniques, Mediterranean Technology Park, 08860 Castelldefels (Barcelona), Spain [2] ICREA-Institució Catalana de Recerca i Estudis Avançats, 08010 Barcelona, Spain.

出版信息

Nat Nanotechnol. 2014 May;9(5):358-64. doi: 10.1038/nnano.2014.40. Epub 2014 Mar 30.

Abstract

Fluctuation theorems are a generalization of thermodynamics on small scales and provide the tools to characterize the fluctuations of thermodynamic quantities in non-equilibrium nanoscale systems. They are particularly important for understanding irreversibility and the second law in fundamental chemical and biological processes that are actively driven, thus operating far from thermal equilibrium. Here, we apply the framework of fluctuation theorems to investigate the important case of a system relaxing from a non-equilibrium state towards equilibrium. Using a vacuum-trapped nanoparticle, we demonstrate experimentally the validity of a fluctuation theorem for the relative entropy change occurring during relaxation from a non-equilibrium steady state. The platform established here allows non-equilibrium fluctuation theorems to be studied experimentally for arbitrary steady states and can be extended to investigate quantum fluctuation theorems as well as systems that do not obey detailed balance.

摘要

涨落定理是热力学在小尺度上的推广,为刻画非平衡纳米系统中热力学量的涨落提供了工具。它们对于理解基本的化学和生物过程中的不可逆性和第二定律尤为重要,因为这些过程是在远离热平衡的条件下被主动驱动的。在这里,我们应用涨落定理的框架来研究系统从非平衡态向平衡态弛豫的重要情况。我们使用真空捕获的纳米粒子,实验证明了在从非平衡稳态弛豫过程中相对熵变化的涨落定理的有效性。这里建立的平台允许对任意稳态进行非平衡涨落定理的实验研究,并可扩展到研究量子涨落定理以及不遵守详细平衡的系统。

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