Anomalous Long-Ranged Influence of an Inclusion in Momentum-Conserving Active Fluids

IF 11.6 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Physical Review X Pub Date : 2024-11-06 DOI:10.1103/physrevx.14.041034
Thibaut Arnoulx de Pirey, Yariv Kafri, Sriram Ramaswamy
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Abstract

We show that an inclusion placed inside a dilute Stokesian suspension of microswimmers induces power-law number-density modulations and flows. These take a different form depending on whether the inclusion is held fixed by an external force—for example, an optical tweezer—or if it is free. When the inclusion is held in place, the far-field fluid flow is a Stokeslet, while the microswimmer density decays as 1/𝑟2+𝜀, with 𝑟 the distance from the inclusion and 𝜀 an anomalous exponent which depends on the symmetry of the inclusion and varies continuously as a function of a dimensionless number characterizing the relative amplitudes of the convective and diffusive effects. The angular dependence takes a nontrivial form which depends on the same dimensionless number. When the inclusion is free to move, the far-field fluid flow is a stresslet, and the microswimmer density decays as 1/𝑟2 with a simple angular dependence. These long-range modulations mediate long-range interactions between inclusions that we characterize.

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动量守恒型活性流体中夹杂物的异常远距离影响
我们的研究表明,放置在微游子的稀释斯托克斯悬浮液中的包裹体会诱发幂律数密度调制和流动。根据包体是否被外力固定--例如光学镊子--或是否自由,它们的形式有所不同。当包涵体被固定时,远场流体流为斯托克斯小波,而微观密度的衰减为 1/𝑟2+𝜀,其中𝑟为与包涵体的距离,𝜀为异常指数,它取决于包涵体的对称性,并作为表征对流效应和扩散效应相对振幅的无量纲数的函数连续变化。与角度有关的非简单形式取决于相同的无量纲数。当包含体自由移动时,远场流体流是一个应力子,微泳密度以 1/𝑟2 的形式衰减,并具有简单的角度依赖性。这些长程调制介导了夹杂物之间的长程相互作用,我们对其进行了表征。
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来源期刊
Physical Review X
Physical Review X PHYSICS, MULTIDISCIPLINARY-
CiteScore
24.60
自引率
1.60%
发文量
197
审稿时长
3 months
期刊介绍: Physical Review X (PRX) stands as an exclusively online, fully open-access journal, emphasizing innovation, quality, and enduring impact in the scientific content it disseminates. Devoted to showcasing a curated selection of papers from pure, applied, and interdisciplinary physics, PRX aims to feature work with the potential to shape current and future research while leaving a lasting and profound impact in their respective fields. Encompassing the entire spectrum of physics subject areas, PRX places a special focus on groundbreaking interdisciplinary research with broad-reaching influence.
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