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相互作用个体系统中 Lévy 行走的出现。

Emergence of Lévy walks in systems of interacting individuals.

作者信息

Fedotov Sergei, Korabel Nickolay

机构信息

School of Mathematics, The University of Manchester, Manchester M13 9PL, United Kingdom.

出版信息

Phys Rev E. 2017 Mar;95(3-1):030107. doi: 10.1103/PhysRevE.95.030107. Epub 2017 Mar 28.

Abstract

We propose a model of superdiffusive Lévy walk as an emergent nonlinear phenomenon in systems of interacting individuals. The aim is to provide a qualitative explanation of recent experiments [G. Ariel et al., Nat. Commun. 6, 8396 (2015)2041-172310.1038/ncomms9396] revealing an intriguing behavior: swarming bacteria fundamentally change their collective motion from simple diffusion into a superdiffusive Lévy walk dynamics. We introduce microscopic mean-field kinetic equations in which we combine two key ingredients: (1) alignment interactions between individuals and (2) non-Markovian effects. Our interacting run-and-tumble model leads to the superdiffusive growth of the mean-squared displacement and the power-law distribution of run length with infinite variance. The main result is that the superdiffusive behavior emerges as a cooperative effect without using the standard assumption of the power-law distribution of run distances from the inception. At the same time, we find that the collision and repulsion interactions lead to the density-dependent exponential tempering of power-law distributions. This qualitatively explains the experimentally observed transition from superdiffusion to the diffusion of mussels as their density increases [M. de Jager et al., Proc. R. Soc. B 281, 20132605 (2014)PRLBA40962-845210.1098/rspb.2013.2605].

摘要

我们提出了一种超扩散 Lévy 行走模型,将其作为相互作用个体系统中出现的一种非线性现象。目的是对最近的实验 [G. Ariel 等人,《自然通讯》6, 8396 (2015)2041 - 172310.1038/ncomms9396] 给出定性解释,这些实验揭示了一种有趣的行为:群居细菌从根本上改变了它们的集体运动,从简单扩散转变为超扩散 Lévy 行走动力学。我们引入了微观平均场动力学方程,其中结合了两个关键要素:(1) 个体之间的对齐相互作用和 (2) 非马尔可夫效应。我们的相互作用的奔跑与翻滚模型导致均方位移的超扩散增长以及奔跑长度的幂律分布,且方差无限。主要结果是,超扩散行为作为一种协同效应出现,无需从一开始就使用奔跑距离幂律分布的标准假设。同时,我们发现碰撞和排斥相互作用导致幂律分布的密度依赖指数缓和。这定性地解释了实验观察到的随着贻贝密度增加,其从超扩散向扩散的转变 [M. de Jager 等人,《英国皇家学会学报 B》281, 20132605 (2014)PRLBA40962 - 845210.1098/rspb.2013.2605]。

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