Active nematic coherence probed under spatial patterns of distributed activity.

IF 2.9 3区 化学 Q3 CHEMISTRY, PHYSICAL Soft Matter Pub Date : 2024-11-22 DOI:10.1039/d4sm00651h
Ignasi Vélez-Cerón, Jordi Ignés-Mullol, Francesc Sagués
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Abstract

A photoresponsive variant of the paradigmatic active nematic fluid made of microtubules and powered by kinesin motors is studied in a conventional two-dimensional interface under blue-light illumination. This advantageously permits the system's performance to be assessed under conditions of spatially distributed activity. Both turbulent and flow aligning conditions are separately analyzed. Under uniform illuminating conditions, active flows get enhanced, in accordance with previous observations. In contrast, patterning the activity appears to disturb the effective activity measured in terms of the vorticity of the elicited flows. We interpret this result as alternative evidence of the important role played by the active length scale in setting not only the textural and flow characteristics of the active nematic but also, most importantly, the range of material integrity. Our research continues to explore perspectives that should pave the way for an effective control of such an admirable material.

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在分布式活动的空间模式下探测主动神经相干性。
在蓝光照射下,我们在一个传统的二维界面上研究了由微管组成并由驱动蛋白马达驱动的典型活性向列流体的光响应变体。这样做的好处是可以在空间分布活跃的条件下评估该系统的性能。我们分别分析了湍流和流动对齐两种条件。在均匀照明条件下,活动流得到增强,这与之前的观察结果一致。与此相反,活动的模式化似乎会扰乱根据所激发的流动的涡度来测量的有效活动。我们将这一结果解释为活性长度尺度在设定活性向列的纹理和流动特性以及最重要的材料完整性范围方面发挥重要作用的替代证据。我们的研究将继续探索各种观点,为有效控制这种令人钦佩的材料铺平道路。
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来源期刊
Soft Matter
Soft Matter 工程技术-材料科学:综合
CiteScore
6.00
自引率
5.90%
发文量
891
审稿时长
1.9 months
期刊介绍: Where physics meets chemistry meets biology for fundamental soft matter research.
期刊最新文献
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