Department of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.
Department of Biomathematics, University of California at Los Angeles, Los Angeles, California 90095-1766, USA.
J Chem Phys. 2018 Feb 14;148(6):064102. doi: 10.1063/1.5008524.
Quantifying the escape rate from a meta-stable state is essential to understand a wide range of dynamical processes. Kramers' classical rate formula is the product of an exponential function of the potential barrier height and a pre-factor related to the friction coefficient. Although many applications of the rate formula focused on the exponential term, the prefactor can have a significant effect on the escape rate in certain parameter regions, such as the overdamped limit and the underdamped limit. There have been continuous interests to understand the effect of non-detailed balance on the escape rate; however, how the prefactor behaves under strong non-detailed balance force remains elusive. In this work, we find that the escape rate formula has a vanishing prefactor with decreasing friction strength under the strong non-detailed balance limit. We both obtain analytical solutions in specific examples and provide a derivation for more general cases. We further verify the result by simulations and propose a testable experimental system of a charged Brownian particle in electromagnetic field. Our study demonstrates that a special care is required to estimate the effect of prefactor on the escape rate when non-detailed balance force dominates.
量化从亚稳态逃逸的速率对于理解广泛的动力学过程至关重要。克拉默斯(Kramers)的经典速率公式是势垒高度的指数函数与与摩擦系数相关的前因子的乘积。尽管速率公式的许多应用都集中在指数项上,但前因子在某些参数区域(例如过阻尼极限和欠阻尼极限)中对逃逸速率有重大影响。人们一直有兴趣了解非平衡态对逃逸速率的影响;然而,在强非平衡态力下,前因子的行为仍然难以捉摸。在这项工作中,我们发现,在强非平衡极限下,随着摩擦强度的降低,逃逸速率公式的前因子趋于零。我们在具体示例中获得了解析解,并为更一般的情况提供了推导。我们通过模拟进一步验证了该结果,并提出了一个在电磁场中带电布朗粒子的可测试实验系统。我们的研究表明,当非平衡态力占主导地位时,需要特别注意估计前因子对逃逸速率的影响。