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Motion of active tracer in a lattice gas with cross-shaped particles

机译:活性示踪剂在晶格气中的运动与交叉形颗粒

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摘要

We analyze the dynamics of an active tracer particle embedded in a thermal lattice gas. All particles are subject to exclusion up to third nearest neighbors on the square lattice, which leads to slow dynamics at high densities. For the case with no rotational diffusion of the tracer, we derive an analytical expression for the resulting drift velocity v of the tracer in terms of non-equilibrium density correlations involving the tracer particle and its neighbors, which we verify using numerical simulations. We show that the properties of the passive system alone do not adequately describe even this simple system of a single non-rotating active tracer. For large activity and low density, we develop an approximation for v. For the case where the tracer undergoes rotational diffusion independent of its neighbors, we relate its diffusion coefficient to the thermal diffusion coefficient and v. Finally, we study dynamics where the rotation of the tracer is limited by the presence of neighboring particles. We find that the effect of this rotational locking may be quantitatively described in terms of a reduction in the rotation rate.
机译:我们分析了嵌入热晶格气体中的活性示踪粒子的动态。所有颗粒都须排除在方格子上的第三个最近邻居,这导致高密度的动态慢。对于该示踪剂没有旋转扩散的情况,我们在涉及示踪剂粒子及其邻居的非平衡密度相关性方面导出了示踪剂的所得漂移速度V的分析表达,我们使用数值模拟验证。我们表明,即使是单个非旋转活动示踪剂的这种简单的系统,单独的被动系统的性质也不会充分描述。对于大的活动和低密度,我们开发了v的近似。对于追踪器独立于其邻居,示踪剂经历旋转扩散的情况,我们将其扩散系数与热扩散系数和v相关联。最后,我们研究了旋转的动态示踪剂受相邻颗粒的存在限制。我们发现,可以在旋转速率的降低方面可以定量地描述该旋转锁定的效果。

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