Funo Ken, Shitara Tomohiro, Ueda Masahito
School of Physics, Peking University, Beijing 100871, China.
Department of Physics, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Phys Rev E. 2016 Dec;94(6-1):062112. doi: 10.1103/PhysRevE.94.062112. Epub 2016 Dec 8.
Work fluctuation and total entropy production play crucial roles in small thermodynamic systems subject to large thermal fluctuations. We investigate a trade-off relation between them in a nonequilibrium situation in which a system starts from an arbitrary nonequilibrium state. We apply a variational method to study this problem and find a stationary solution against variations over protocols that describe the time dependence of the Hamiltonian of the system. Using the stationary solution, we find the minimum of the total entropy production for a given amount of work fluctuation. An explicit protocol that achieves this is constructed from an adiabatic process followed by a quasistatic process. The obtained results suggest how one can control the nonequilibrium dynamics of the system while suppressing its work fluctuation and total entropy production.
在受到大的热涨落影响的小型热力学系统中,功涨落和总熵产生起着至关重要的作用。我们研究了它们在非平衡情形下的一种权衡关系,在这种情形中,系统从任意非平衡态开始。我们应用变分方法来研究这个问题,并针对描述系统哈密顿量时间依赖性的协议的变化找到一个稳定解。利用这个稳定解,我们找到了给定功涨落量下总熵产生的最小值。实现这一点的一个明确协议是由一个绝热过程接着一个准静态过程构建而成的。所得到的结果表明了如何在抑制系统的功涨落和总熵产生的同时控制其非平衡动力学。