首页> 外文期刊>The Journal of Chemical Physics >Non-monotonous polymer translocation time across corrugated channels: Comparison between Fick-Jacobs approximation and numerical simulations
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Non-monotonous polymer translocation time across corrugated channels: Comparison between Fick-Jacobs approximation and numerical simulations

机译:跨波纹通道的非单调聚合物迁移时间:Fick-Jacobs逼近与数值模拟之间的比较

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摘要

We study the translocation of polymers across varying-section channels. Using systematic approximations, we derive a simplified model that reduces the problem of polymer translocation through varying-section channels to that of a point-like particle under the action of an effective potential. Such a model allows us to identify the relevant parameters controlling the polymer dynamics and, in particular, their translocation time. By comparing our analytical results with numerical simulations we show that, under suitable conditions, our model provides reliable predictions of the dynamics of both Gaussian and self-avoiding polymers, in two-and three-dimensional confinements. Moreover, both theoretical predictions, as well as Brownian dynamic results, show a non-monotonous dependence of polymer translocation velocity as a function of polymer size, a feature that can be exploited for polymer separation. Published by AIP Publishing.
机译:我们研究了跨不同截面通道的聚合物移位。使用系统的近似值,我们得出了一个简化的模型,该模型在有效电势的作用下将聚合物通过变截面通道的迁移问题减少到点状颗粒的问题。这种模型使我们能够确定控制聚合物动力学的相关参数,尤其是它们的易位时间。通过将我们的分析结果与数值模拟进行比较,我们发现,在合适的条件下,我们的模型可以在二维和三维范围内对高斯和自规避聚合物的动力学提供可靠的预测。此外,无论是理论预测还是布朗动力学结果,都表明聚合物易位速度与聚合物尺寸的函数具有非单调依赖性,这一特征可用于聚合物分离。由AIP Publishing发布。

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