论文标题

惯性活性夜毒中的列表凝结和拓扑缺陷

Nematic order condensation and topological defects in inertial active nematics

论文作者

Saghatchi, Roozbeh, Yildiz, Mehmet, Doostmohammadi, Amin

论文摘要

不同长度尺度的活物质表现出主动的列神经特征,例如定向秩序,列神经拓扑缺陷和主动的nematic湍流。使用数值模拟,我们研究了流体惯性对主动神灵中集体模式形成的影响。我们表明,由于粘度降低而导致的惯性效应的增量增加导致列序逐渐熔化,并在不连续过渡到涡旋 - 符合态状态之前,拓扑缺陷密度增加。在足够低的粘度下,出现的涡旋 - 谐振状态与巨型涡旋内的列级凝结和拓扑缺陷密度下降相吻合。我们进一步显示拓扑缺陷周围的流场受到了惯性影响的显着影响。此外,我们证明了动能光谱对惯性效应的强烈依赖性,在涡旋 - 统计阶段恢复了kolmogorov缩放,但没有发现在较高粘度下进行普遍缩放的证据。这些发现揭示了活跃的nematic湍流中的新复杂性,并强调了在设定流动和活性颗粒的定向组织中的主动效应和惯性效应之间的重要串扰。

Living materials at different length scales manifest active nematic features such as orientational order, nematic topological defects, and active nematic turbulence. Using numerical simulations we investigate the impact of fluid inertia on the collective pattern formation in active nematics. We show that an incremental increase in inertial effects due to reduced viscosity results in gradual melting of nematic order with an increase in topological defect density before a discontinuous transition to a vortex-condensate state. The emergent vortex-condensate state at low enough viscosities coincides with nematic order condensation within the giant vortices and the drop in the density of topological defects. We further show flow field around topological defects is substantially affected by inertial effects. Moreover, we demonstrate the strong dependence of the kinetic energy spectrum on the inertial effects, recover the Kolmogorov scaling within the vortex-condensate phase, but find no evidence of universal scaling at higher viscosities. The findings reveal new complexities in active nematic turbulence and emphasize the important cross-talk between active and inertial effects in setting flow and orientational organization of active particles.

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