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首页> 外文期刊>The Journal of Chemical Physics >Entropic rectification and current inversion in a pulsating channel
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Entropic rectification and current inversion in a pulsating channel

机译:脉动通道中的熵精馏和电流反转

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摘要

We show the existence of a resonant behavior of the current of Brownian particles confined in a pulsating channel. The interplay between the periodic oscillations of the shape of the channel and a force applied along its axis leads to an increase of the particle current as a function of the diffusion coefficient. A regime of current inversion is also observed for particular values of the oscillation frequency and the applied force. The model proposed is based on the Fick-Jacobs equation in which the entropic barrier and the effective diffusion coefficient depend on time. The phenomenon observed could be used to optimize transport in microfluidic devices or biological channels. Published by AIP Publishing.
机译:我们展示了在脉动通道中限制的褐色粒子的电流的谐振行为。 通道形状的周期性振荡与沿其轴线的力之间的相互作用导致粒子电流的增加,作为扩散系数的函数。 还观察到电流反转的制度,以特别是振荡频率和施加力的特定值。 所提出的模型基于Fick-Jacobs方程,其中熵屏障和有效扩散系数依赖于时间。 观察到的现象可用于优化微流体装置或生物通道的运输。 通过AIP发布发布。

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