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速度相关力驱动的欠阻尼朗之万系统的热力学不确定性关系。

Thermodynamic uncertainty relation for underdamped Langevin systems driven by a velocity-dependent force.

机构信息

School of Physics and Quantum Universe Center, Korea Institute for Advanced Study, Seoul 02455, Korea.

出版信息

Phys Rev E. 2019 Dec;100(6-1):062132. doi: 10.1103/PhysRevE.100.062132.

Abstract

Recently, it has been shown that there is a trade-off relation between thermodynamic cost and current fluctuations, referred to as the thermodynamic uncertainty relation (TUR). The TUR has been derived for various processes, such as discrete-time Markov jump processes and overdamped Langevin dynamics. For underdamped dynamics, it has recently been reported that some modification is necessary for application of the TUR. However, the previous TUR for underdamped dynamics is not applicable to a system driven by a velocity-dependent force. In this study, we present a TUR, applicable to a system driven by a velocity-dependent force in the context of underdamped Langevin dynamics, by extending the theory of Vu and Hasegawa [Phys. Rev. E 100, 032130 (2019)2470-004510.1103/PhysRevE.100.032130]. We show that our TUR accurately describes the trade-off properties of a molecular refrigerator (cold damping), Brownian dynamics in a magnetic field, and an active particle system.

摘要

最近,人们已经证明热力学成本和电流波动之间存在权衡关系,被称为热力学不确定性关系(TUR)。TUR 已经被推导出适用于各种过程,例如离散时间马尔可夫跳跃过程和过阻尼朗之万动力学。对于欠阻尼动力学,最近已经有报道指出,对于 TUR 的应用需要进行一些修改。然而,之前的欠阻尼动力学 TUR 不适用于由速度相关力驱动的系统。在本研究中,我们通过扩展 Vu 和 Hasegawa 的理论[Phys. Rev. E 100, 032130 (2019)2470-004510.1103/PhysRevE.100.032130],提出了适用于由速度相关力驱动的欠阻尼朗之万动力学系统的 TUR,从而解决了这一问题。我们表明,我们的 TUR 准确地描述了分子冷却器(冷阻尼)、磁场中的布朗动力学和主动粒子系统的权衡特性。

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