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对称排斥过程中的驱动示踪剂:线性响应及其他

Driven Tracer in the Symmetric Exclusion Process: Linear Response and Beyond.

作者信息

Grabsch Aurélien, Rizkallah Pierre, Illien Pierre, Bénichou Olivier

机构信息

Sorbonne Université, CNRS, Laboratoire de Physique Théorique de la Matière Condensée (LPTMC), 4 Place Jussieu, 75005 Paris, France.

Sorbonne Université, CNRS, Physico-Chimie des Électrolytes et Nanosystèmes Interfaciaux (PHENIX), 4 Place Jussieu, 75005 Paris, France.

出版信息

Phys Rev Lett. 2023 Jan 13;130(2):020402. doi: 10.1103/PhysRevLett.130.020402.

Abstract

Tracer dynamics in the symmetric exclusion process (SEP), where hard-core particles diffuse on an infinite one-dimensional lattice, is a paradigmatic model of anomalous diffusion. While the equilibrium situation has received a lot of attention, the case where the tracer is driven by an external force, which provides a minimal model of nonequilibrium transport in confined crowded environments, remains largely unexplored. Indeed, the only available analytical results concern the means of both the position of the tracer and the lattice occupation numbers in its frame of reference and higher-order moments but only in the high-density limit. Here, we provide a general hydrodynamic framework that allows us to determine the first cumulants of the bath-tracer correlations and of the tracer's position in function of the driving force, up to quadratic order (beyond linear response). This result constitutes the first determination of the bias dependence of the variance of a driven tracer in the SEP for an arbitrary density. The framework presented here can be applied, beyond the SEP, to more general configurations of a driven tracer in interaction with obstacles in one dimension.

摘要

在对称排斥过程(SEP)中,硬核粒子在无限一维晶格上扩散,其示踪动力学是反常扩散的一个典型模型。虽然平衡情况已受到大量关注,但示踪剂在外力驱动下的情况在很大程度上仍未得到探索,外力驱动为受限拥挤环境中的非平衡输运提供了一个最小模型。事实上,仅有的可用分析结果涉及示踪剂位置的均值及其参考系中的晶格占据数以及高阶矩,但仅在高密度极限情况下。在此,我们提供了一个通用的流体动力学框架,该框架使我们能够确定浴 - 示踪剂相关性以及示踪剂位置的一阶累积量作为驱动力的函数,直至二次阶(超出线性响应)。这一结果首次确定了任意密度下SEP中驱动示踪剂方差的偏差依赖性。这里提出的框架除了SEP之外,还可应用于一维中与障碍物相互作用的驱动示踪剂的更一般配置。

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