Gulati Paarth, Caballero Fernando, Kolvin Itamar, You Zhihong, Marchetti M Cristina
Department of Physics, University of California Santa Barbara, Santa Barbara, CA 93106, USA.
Department of Physics, Brandeis University, Waltham, Massachusetts 02453, USA.
Soft Matter. 2024 Oct 2;20(38):7703-7714. doi: 10.1039/d4sm00822g.
Active liquid crystals exert nonequilibrium stresses on their surroundings through constant consumption of energy, giving rise to dynamical steady states not present in equilibrium. The paradigmatic example of an active liquid crystal is a suspension of microtubule bundles powered by kinesin motor proteins, which exhibits self-sustained spatiotemporal chaotic flows. This system has been modelled using continuum theories that couple the microtubule orientation to active flows. Recently the focus has shifted to the interfacial properties of mixtures of active liquid crystals and passive fluids. Active/passive interfaces have been shown to support propagating capillary waves in the absence of inertia and offer a promising route for relating experimental parameters to those of the continuum theory. In this paper we report the derivation of a minimal model that captures the linear dynamics of the interface between an active liquid crystal and a passive fluid. We show that the dynamics of the interface, although powered by active flows throughout the bulk, is qualitatively captured by equations that couple non-reciprocally interface height and nematic director at the interface. This minimal model reproduces the dynamical structure factor evaluated from numerical simulations and the qualitative form of the wave dispersion relation seen in experiments.
活性液晶通过持续消耗能量对其周围环境施加非平衡应力,从而产生平衡状态中不存在的动态稳态。活性液晶的典型例子是由驱动蛋白驱动的微管束悬浮液,它表现出自维持的时空混沌流。该系统已使用将微管取向与活性流耦合的连续介质理论进行建模。最近,研究重点已转向活性液晶与被动流体混合物的界面特性。已表明活性/被动界面在没有惯性的情况下支持传播的毛细波,并为将实验参数与连续介质理论的参数联系起来提供了一条有前景的途径。在本文中,我们报告了一个最小模型的推导,该模型捕捉了活性液晶与被动流体之间界面的线性动力学。我们表明,界面的动力学虽然由整个主体中的活性流驱动,但定性地由在界面处将非互易界面高度与向列型指向矢耦合的方程捕获。这个最小模型再现了从数值模拟评估的动态结构因子以及实验中看到的波色散关系的定性形式。