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活性向列介质中的游动杆:捕获、取向捕获和反常扩散。

A motile rod in an active nematic medium: caging, orientational trapping, and anomalous diffusion.

作者信息

Sharma Abhishek, Soni Harsh

机构信息

School of Physical Sciences (SPS), Indian Institute of Technology Mandi, Parashar Road, Tehsil Sadar, Near Kataula, Kamand, Himachal Pradesh 175005, India.

出版信息

Soft Matter. 2025 Jul 23;21(29):5852-5861. doi: 10.1039/d5sm00573f.

Abstract

We study the dynamical and statistical properties of a motile polar rod embedded in a vibrated granular medium composed of fore-aft symmetric rods using particle-based numerical simulations. Our study reveals phase-dependent memory effects and transport behaviors of the polar rod governed by the structural phase of the medium. In the isotropic phase, the rod behaves as an active Brownian particle, experiencing a noisy environment with increasing medium concentration that leads to short-lived directional memory, resulting in enhanced rotational diffusion and reduced translational diffusivity. In the nematic phase-determined by the medium's concentration and the polar rod's intrinsic rotational noise-the rod exhibits two distinct states: a rotationally trapped state, in which its orientation is locked along the nematic director, and a rotationally free state, in which it explores all orientations despite a tendency to align with the director. At high concentrations, the medium forms periodic layers in which the rods are slightly tilted in opposite directions across adjacent layers relative to the nematic director, as reported by Sharma . [, 2024, , 6608-6617]. In this regime, the motile rod is effectively caged in the direction perpendicular to the nematic alignment. We further study the diffusive behavior of the polar rod in both states, demonstrating that the phase of the medium strongly influences its diffusion dynamics and the MSD exponent values, revealing a wide range of behavior from normal to superdiffusive dynamics.

摘要

我们使用基于粒子的数值模拟方法,研究了嵌入由前后对称杆组成的振动颗粒介质中的运动性极性杆的动力学和统计特性。我们的研究揭示了极性杆的相位相关记忆效应和由介质结构相控制的输运行为。在各向同性相中,杆表现为一个主动布朗粒子,在介质浓度增加的噪声环境中经历短暂的方向记忆,导致旋转扩散增强和平动扩散率降低。在由介质浓度和极性杆的固有旋转噪声决定的向列相中,杆表现出两种不同的状态:一种是旋转捕获状态,其取向沿向列指向矢锁定;另一种是旋转自由状态,尽管有与指向矢对齐的趋势,但它仍探索所有取向。在高浓度下,如夏尔马所报道的 [, 2024, , 6608 - 6617],介质形成周期性层,其中杆相对于向列指向矢在相邻层中向相反方向轻微倾斜。在这种情况下,运动杆在垂直于向列排列的方向上有效地被限制。我们进一步研究了极性杆在两种状态下的扩散行为,表明介质的相强烈影响其扩散动力学和均方位移指数值,揭示了从正常到超扩散动力学的广泛行为。

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