论文标题

具有部分秩序的主动粘弹性词汇

Active viscoelastic nematics with partial degree of order

论文作者

Turzi, Stefano

论文摘要

活跃列凝胶的连续模型已被证明成功地描述了许多在流体环境中由棒状运动亚基组成的生物系统。但是,为了彻底了解活动生物系统行为的集体过程,这些模型的理论基础仍然需要进行严格的研究。为此,我们得出了一个基于列明体能量的最小模型,其中关键参数具有简单的物理解释,而活动的不可逆转性也清晰出现。通过材料重塑来解释粘弹性材料响应与微观成分的主动动力学之间的相互作用。由于列弹弹量调节器与方向定向张量张量$ \ bq $之间的运动耦合,包括部分订单和缺陷动力学。在简单的一维通道几何形状中,我们使用线性稳定性分析表明,即使在各向同性阶段,流动诱导的局部列表和活动之间的相互作用也会导致颗粒的自发流。

Continuum models of active nematic gels have proved successful to describe a number of biological systems consisting of a population of rodlike motile subunits in a fluid environment. However, in order to get a thorough understanding of the collective processes underlying the behaviour of active biosystems, the theoretical underpinnings of these models still need to be critically examined. To this end, we derive a minimal model based on a nematic elastomer energy, where the key parameters have a simple physical interpretation and the irreversible nature of activity emerges clearly. The interplay between viscoelastic material response and active dynamics of the microscopic constituents is accounted for by material remodelling. Partial degree of order and defect dynamics is included as a result of the kinematic coupling between the nematic elastomer shape-tensor and the orientational ordering tensor $\bQ$. In a simple one-dimensional channel geometry, we use linear stability analysis to show that even in the isotropic phase the interaction between flow-induced local nematic order and activity results in a spontaneous flow of particles.

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