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极性自驱动粒子二元混合物集体动力学中的模式形成与相变

Pattern formation and phase transition in the collective dynamics of a binary mixture of polar self-propelled particles.

作者信息

Adhikary Sagarika, Santra S B

机构信息

Department of Physics, Indian Institute of Technology Guwahati, Guwahati-781039, Assam, India.

出版信息

Phys Rev E. 2022 Jun;105(6-1):064612. doi: 10.1103/PhysRevE.105.064612.

Abstract

The collective behavior of a binary mixture of polar self-propelled particles (SPPs) with different motile properties is studied. The binary mixture consists of slow-moving SPPs (sSPPs) of fixed velocity v_{s} and fast-moving SPPs (fSPPs) of fixed velocity v_{f}. These SPPs interact via a short-range interaction irrespective of their types. They move following certain position and velocity update rules similar to the Vicsek model (VM) under the influence of an external noise η. The system is studied at different values of v_{f} keeping v_{s}=0.01 constant for a fixed density ρ=0.5. Different phase-separated collective patterns that appear in the system over a wide range of noise η are characterized. The fSPPs and the sSPPs are found to be orientationally phase synchronized at the steady state. We studied an orientational order-disorder transition varying the angular noise η and identified the critical noise η_{c} for different v_{f}. Interestingly, both the species exhibit continuous transition for v_{f}<100v_{s} and discontinuous transition for v_{f}>100v_{s}. A new set of critical exponents is determined for the continuous transitions. However, the binary model is found to be nonuniversal as the values of the critical exponents depend on the velocity. The effect of interaction radius on the system behavior is also studied.

摘要

研究了具有不同运动特性的极性自驱动粒子(SPP)二元混合物的集体行为。该二元混合物由固定速度为(v_{s})的慢速自驱动粒子(sSPP)和固定速度为(v_{f})的快速自驱动粒子(fSPP)组成。这些自驱动粒子无论其类型如何,都通过短程相互作用进行相互作用。在外部噪声(\eta)的影响下,它们遵循与Vicsek模型(VM)类似的某些位置和速度更新规则进行移动。对于固定密度(\rho = 0.5),保持(v_{s}=0.01)不变,研究了系统在不同(v_{f})值下的情况。表征了在广泛的噪声(\eta)范围内系统中出现的不同相分离集体模式。发现fSPP和sSPP在稳态下取向相位同步。我们通过改变角噪声(\eta)研究了取向有序 - 无序转变,并确定了不同(v_{f})时的临界噪声(\eta_{c})。有趣的是,对于(v_{f}<100v_{s}),两种粒子都表现出连续转变,而对于(v_{f}>100v_{s}),则表现出不连续转变。确定了连续转变的一组新的临界指数。然而,发现二元模型是非通用的,因为临界指数的值取决于速度。还研究了相互作用半径对系统行为的影响。

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