论文标题

活跃手性液滴的混乱和周期动力学

Chaotic and periodical dynamics of active chiral droplets

论文作者

Carenza, Livio Nicola, Gonnella, Giuseppe, Marenduzzo, Davide, Negro, Giuseppe

论文摘要

许多生物分子的手性与在小长度尺度上注入的能量的相互作用是生物学过程的结果。为了揭示这两个特征之间的连接,我们在这里通过晶格玻尔兹曼模拟了在有效凝胶理论的框架内,在强烈的活性掺杂的效果下,在强烈的活性掺杂的效果下,通过晶格玻尔兹曼模拟了活性液滴的行为。我们发现,由活跃力偶极子燃料的手性液晶液滴形成了刺穿液滴内部的缺陷环(封闭式披露线),导致液滴发展出不稳定的运动模式。当液滴通过向内的主动扭矩偶极子加油时,三种不同的动力学制度在变化时会形成热力学手性和主动能量注射的强度:低活动处的稳定旋转状态,一个间歇性的披露舞蹈制度,一个湍流状态,在封闭的情况下形成的湍流是抑制了旋转的旋转旋转的表面表面旋转式的,以相对的旋转表面发展,以相对良好的表面效力。最后,我们表明,前向扭矩偶极子能够以更高的手性能维持一个以核定环的成核/an灭为特征的较高手性动力。

The interplay between the chirality of many biological molecules and the energy injected at small length-scales as the result of biological processes is at the base of the life of the cells. With the aim of unveiling the connection between these two features, here we analyze by means of lattice Boltzmann simulations the behavior of an active droplet of cholesteric liquid crystal under the effect of intense active doping, within the framework of active gel theory. We find that a droplet of chiral liquid crystal, fueled by active force dipoles, develops defect loops (closed disclination lines) that pierce the interior of the droplet, leading the droplet to develop an erratic motility mode. When the droplet is fueled by in-warding active torque dipoles, three different dynamical regimes develops at varying both the thermodynamic chirality and the strength of active energy injection: a stable rotational state at low activity, an intermittent disclination dance regime, and a turbulent state where closed disclination lines formation is inhibited and new pairs of oppositely charged surface defects leads to the development of chaotic rotational motion. Finally, we show that out-warding torque dipoles are able to sustain a periodical dynamics at higher chirality characterized by the nucleation/annihilation of pairs of disclination rings.

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