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剪切流中球形手性游动体的再入双峰性

Re-entrant bimodality in spheroidal chiral swimmers in shear flow.

作者信息

Nili Hossein, Naji Ali

机构信息

School of Physics, Institute for Research in Fundamental Sciences (IPM), Tehran, 19395-5531, Iran.

出版信息

Sci Rep. 2018 May 29;8(1):8328. doi: 10.1038/s41598-018-26771-0.

Abstract

We use a continuum model to report on the behavior of a dilute suspension of chiral swimmers subject to externally imposed shear in a planar channel. Swimmer orientation in response to the imposed shear can be characterized by two distinct phases of behavior, corresponding to unimodal or bimodal distribution functions for swimmer orientation along the channel. These phases indicate the occurrence (or not) of a population splitting phenomenon changing the swimming direction of a macroscopic fraction of active particles to the exact opposite of that dictated by the imposed flow. We present a detailed quantitative analysis elucidating the complexities added to the population splitting behavior of swimmers when they are chiral. In particular, the transition from unimodal to bimodal and vice versa are shown to display a re-entrant behavior across the parameter space spanned by varying the chiral angular speed. We also present the notable effects of particle aspect ratio and self-propulsion speed on system phase behavior and discuss potential implications of our results in applications such as swimmer separation/sorting.

摘要

我们使用连续介质模型来报告手性游动者的稀悬浮液在平面通道中受到外部施加剪切力时的行为。响应于施加的剪切力,游动者的取向可以由两种不同的行为阶段来表征,这对应于沿着通道的游动者取向的单峰或双峰分布函数。这些阶段表明了群体分裂现象的发生(或未发生),该现象将宏观部分活性粒子的游动方向改变为与施加流所规定的方向完全相反。我们进行了详细的定量分析,阐明了手性游动者在群体分裂行为中增加的复杂性。特别是,从单峰到双峰以及反之的转变在通过改变手性角速度跨越的参数空间中显示出重入行为。我们还展示了粒子纵横比和自推进速度对系统相行为的显著影响,并讨论了我们的结果在游动者分离/分选等应用中的潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9657/5974238/4f74eed55af7/41598_2018_26771_Fig1_HTML.jpg

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