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活性布朗粒子在调和势阱中的自诱导极化序。

Self-induced polar order of active Brownian particles in a harmonic trap.

机构信息

Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623 Berlin, Germany.

出版信息

Phys Rev Lett. 2014 Jun 13;112(23):238104. doi: 10.1103/PhysRevLett.112.238104.

Abstract

Hydrodynamically interacting active particles in an external harmonic potential form a self-assembled fluid pump at large enough Péclet numbers. Here, we give a quantitative criterion for the formation of the pump and show that particle orientations align in the self-induced flow field in surprising analogy to ferromagnetic order where the active Péclet number plays the role of inverse temperature. The particle orientations follow a Boltzmann distribution Φ(p) ∼ exp(Ap(z)) where the ordering mean field A scales with the active Péclet number and polar order parameter. The mean flow field in which the particles' swimming directions align corresponds to a regularized Stokeslet with strength proportional to swimming speed. Analytic mean-field results are compared with results from Brownian dynamics simulations with hydrodynamic interactions included and are found to capture the self-induced alignment very well.

摘要

在外部谐和势中,水动力相互作用的活性粒子在足够大的 Peclet 数下形成自组装流体泵。在这里,我们给出了形成泵的定量判据,并表明粒子取向在自诱导流场中排列,这与铁磁有序惊人地相似,其中活性 Peclet 数扮演逆温度的角色。粒子取向遵循玻尔兹曼分布Φ(p)∼exp(Ap(z)),其中有序平均场 A 与活性 Peclet 数和极有序参数成正比。粒子游动方向一致的平均流场对应于正则化 Stokeslet,其强度与游动速度成正比。与包含水动力相互作用的布朗动力学模拟的解析平均场结果进行了比较,结果表明它很好地捕捉了自诱导取向。

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