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手性诱导螺旋自推进的理论模型。

Theoretical model of chirality-induced helical self-propulsion.

机构信息

Laboratory for Physical Biology, RIKEN Quantitative Biology Center, Kobe 650-0047, Japan.

Department of Physics, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Phys Rev E. 2018 Jan;97(1-1):012607. doi: 10.1103/PhysRevE.97.012607.

Abstract

We recently reported the experimental realization of a chiral artificial microswimmer exhibiting helical self-propulsion [T. Yamamoto and M. Sano, Soft Matter 13, 3328 (2017)1744-683X10.1039/C7SM00337D]. In the experiment, cholesteric liquid crystal (CLC) droplets dispersed in surfactant solutions swam spontaneously, driven by the Marangoni flow, in helical paths whose handedness is determined by the chirality of the component molecules of CLC. To study the mechanism of the emergence of the helical self-propelled motion, we propose a phenomenological model of the self-propelled helical motion of the CLC droplets. Our model is constructed by symmetry argument in chiral systems, and it describes the dynamics of CLC droplets with coupled time-evolution equations in terms of a velocity, an angular velocity, and a tensor variable representing the symmetry of the helical director field of the droplet. We found that helical motions as well as other chiral motions appear in our model. By investigating bifurcation behaviors between each chiral motion, we found that the chiral coupling terms between the velocity and the angular velocity, the structural anisotropy of the CLC droplet, and the nonlinearity of model equations play a crucial role in the emergence of the helical motion of the CLC droplet.

摘要

我们最近报道了一种手性人工微游泳者的实验实现,该游泳者表现出螺旋自推进[T. Yamamoto 和 M. Sano, Soft Matter 13, 3328 (2017)1744-683X10.1039/C7SM00337D]。在实验中,胆甾相液晶(CLC)液滴在表面活性剂溶液中自发地螺旋状游动,由 Marangoni 流驱动,其手性由 CLC 组成分子的手性决定。为了研究螺旋自推进运动的出现机制,我们提出了 CLC 液滴的螺旋自推进运动的唯象模型。我们的模型是通过手性系统中的对称论证构建的,它通过速度、角速度和张量变量的时变方程来描述液滴螺旋指向场的对称动力学,张量变量代表液滴螺旋指向场的对称。我们发现,螺旋运动以及其他手性运动出现在我们的模型中。通过研究每种手性运动之间的分岔行为,我们发现速度和角速度之间的手性耦合项、CLC 液滴的结构各向异性以及模型方程的非线性在手性 CLC 液滴螺旋运动的出现中起着至关重要的作用。

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