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Force-dependent mobility and entropic rectification in tubes of periodically varying geometry

机译:几何形状周期性变化的管中与力有关的迁移率和熵整流

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摘要

We investigate transport of point Brownian particles in a tube formed by identical periodic compartments of varying diameter, focusing on the effects due to the compartment asymmetry. The paper contains two parts. First, we study the force-dependent mobility of the particle. The mobility is a symmetric non-monotonic function of the driving force, F, when the compartment is symmetric. Compartment asymmetry gives rise to an asymmetric force-dependent mobility, which remains non-monotonic when the compartment asymmetry is not too high. The F-dependence of the mobility becomes monotonic in tubes formed by highly asymmetric compartments. The transition of the F-dependence of the mobility from non-monotonic to monotonic behavior results in important consequences for the particle motion under the action of a time-periodic force with zero mean, which are discussed in the second part of the paper: In a tube formed by moderately asymmetric compartments, the particle under the action of such a force moves with an effective drift velocity that vanishes at small and large values of the force amplitude having a maximum in between. In a tube formed by highly asymmetric compartments, the effective drift velocity monotonically increases with the amplitude of the driving force and becomes unboundedly large as the amplitude tends to infinity.
机译:我们研究点布朗粒子在由不同直径的相同周期性隔室组成的管中的传输,重点研究由于隔室不对称而产生的影响。本文分为两部分。首先,我们研究粒子的力相关迁移率。当车厢是对称的时,迁移率是驱动力F的对称非单调函数。隔室的不对称引起不对称的力依赖的运动性,当隔室的不对称性不太高时,该运动保持非单调。在高度不对称的隔室形成的管中,迁移率的F相关性变得单调。迁移率的F相关性从非单调行为转变为单调行为,在具有零均值的时间周期力的作用下,对粒子运动产生了重要的影响,这将在本文的第二部分中讨论:在由中等程度不对称的隔室形成的管子中,粒子在这种力的作用下以有效的漂移速度移动,该漂移速度在大小之间的最大值之间的最大值和最小值处消失。在由高度不对称的隔室形成的管中,有效漂移速度随驱动力的振幅单调增加,并且随着振幅趋于无穷大而变得无限大。

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