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Communication: Dominance of extreme statistics in a prototype many-body Brownian ratchet

机译:交流:多体布朗棘轮原型中极端统计的优势

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摘要

Many forms of cell motility rely on Brownian ratchet mechanisms that involve multiple stochastic processes. We present a computational and theoretical study of the nonequilibrium statistical dynamics of such a many-body ratchet, in the specific form of a growing polymer gel that pushes a diffusing obstacle. We find that oft-neglected correlations among constituent filaments impact steady-state kinetics and significantly deplete the gel's density within molecular distances of its leading edge. These behaviors are captured quantitatively by a self-consistent theory for extreme fluctuations in filaments' spatial distribution. (c) 2014 AIP Publishing LLC.
机译:许多形式的细胞运动依赖于涉及多个随机过程的布朗棘轮机制。我们提出了这种多体棘轮的非平衡统计动力学的计算和理论研究,以增长的聚合物凝胶的特定形式推动了扩散障碍。我们发现,构成细丝之间经常被忽略的相关性会影响稳态动力学,并在其前缘的分子距离内显着耗尽凝胶的密度。这些行为是通过自洽的理论定量地捕获的,这些理论用于细丝空间分布的极端波动。 (c)2014 AIP Publishing LLC。

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