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Stochastic resonance during a polymer translocation process

机译:聚合物移位过程中的随机共振

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摘要

We have studied the occurrence of stochastic resonance when a flexible polymer chain undergoes a single-file translocation through a nano-pore separating two spherical cavities, under a time-periodic external driving force. The translocation of the chain is controlled by a free energy barrier determined by chain length, pore length, pore-polymer interaction, and confinement inside the donor and receiver cavities. The external driving force is characterized by a frequency and amplitude. By combining the Fokker-Planck formalism for polymer translocation and a two-state model for stochastic resonance, we have derived analytical formulas for criteria for emergence of stochastic resonance during polymer translocation. We show that no stochastic resonance is possible if the free energy barrier for polymer translocation is purely entropic in nature. The polymer chain exhibits stochastic resonance only in the presence of an energy threshold in terms of polymer-pore interactions. Once stochastic resonance is feasible, the chain entropy controls the optimal synchronization conditions significantly.
机译:我们已经研究了在周期性外部驱动力作用下,柔性聚合物链通过分隔两个球形腔的纳米孔经历单排移位时的随机共振现象。链的易位受自由能垒的控制,该自由能垒由链长,孔长,孔-聚合物相互作用以及供体腔和受体腔内部的约束决定。外部驱动力的特征在于频率和幅度。通过结合用于聚合物移位的Fokker-Planck形式主义和用于随机共振的两态模型,我们导出了用于聚合物移位期间随机共振出现的标准的分析公式。我们表明,如果聚合物易位的自由能垒本质上是纯熵的,则不可能发生随机共振。聚合物链仅在存在能量阈值的情况下才表现出随机共振,所述能量阈值取决于聚合物-孔间的相互作用。一旦随机共振可行,链熵将显着控制最佳同步条件。

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