论文标题
示踪剂的动力波动,耦合到主动和被动颗粒
Dynamical fluctuations of a tracer coupled to active and passive particles
论文作者
论文摘要
我们研究惯性示踪剂颗粒在弹性上耦合到被动或活性布朗颗粒的诱导动力学。在两种情况下,我们整合了为示踪剂动力学获取广义的Langevin方程的环境自由度。特别是,我们发现了示踪剂的耗散内核和有效噪声的确切形式,并将其与先前研究中使用的活动浴的现象学建模进行了比较。我们表明,在两种情况下,第二次波动 - 散落关系(FDR)均未在早期持有。但是,在有限的时候,示踪剂动力学违反了活性(被动)环境的FDR。我们在这两个情况下都计算了该制度中的线性响应公式,并表明被动培养基满足平衡波动响应关系(FRR),而活性培养基则没有 - 我们明确量化了这种违规的程度。我们表明,尽管活动介质通常对示踪剂进行非平衡描述,但有效的平衡图像在培养基的较小活性极限下渐近地出现。我们还计算了示踪剂的平均平方速度和平均平方位移,并报告它们随时间变化。
We study the induced dynamics of an inertial tracer particle elastically coupled to passive or active Brownian particles. We integrate out the environment degrees of freedom to obtain generalized Langevin equation for the tracer dynamics in both cases. In particular, we find the exact form of the dissipation kernel and effective noise experienced by the tracer and compare it with the phenomenological modeling of active baths used in previous studies. We show that the second fluctuation-dissipation relation (FDR) does not hold at early times for both cases. However, at finite times, the tracer dynamics violate (obeys) the FDR for the active (passive) environment. We calculate the linear response formulas in this regime for both cases and show that the passive medium satisfies an equilibrium fluctuation response relation (FRR), while the active medium does not -- we quantify the extent of this violation explicitly. We show that though the active medium generally renders a nonequilibrium description of the tracer, an effective equilibrium picture emerges asymptotically in the small activity limit of the medium. We also calculate the mean squared velocity and mean squared displacement of the tracer and report how they vary with time.