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Large deviation function of a tracer position in single file diffusion

机译:单文件扩散中示踪剂位置的大偏差函数

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Diffusion of impenetrable particles in a crowded one-dimensional channel is referred as the single file diffusion. The particles do not pass each other and the displacement of each individual particle is sub-diffusive. We analyse a simple realization of this single file diffusion problem where one dimensional Brownian point particles interact only by hard-core repulsion. We show that the large deviation function which characterizes the displacement of a tracer at large time can be computed via a mapping to a problem of non-interacting Brownian particles. We confirm recently obtained results of the one time distribution of the displacement and show how to extend them to the multi-time correlations. The probability distribution of the tracer position depends on whether we take annealed or quenched averages. In the quenched case we notice an exact relation between the distribution of the tracer and the distribution of the current. This relation is in fact much more general and would be valid for arbitrary single file diffusion. It allows in particular to get the full statistics of the tracer position for the symmetric simple exclusion process (SSEP) at density 1/2 in the quenched case.
机译:在拥挤的一维通道中难以穿透的粒子的扩散称为单文件扩散。粒子彼此不通过,并且每个粒子的位移都是次扩散的。我们分析了这种单文件扩散问题的简单实现,其中一维布朗点粒子仅通过硬核排斥相互作用。我们表明,可以通过映射非相互作用布朗粒子的问题来计算表征大时间示踪剂位移的大偏差函数。我们确认最近获得的位移一次分布的结果,并显示如何将其扩展到多次相关。示踪剂位置的概率分布取决于我们是否采用退火或淬火的平均值。在失超的情况下,我们注意到示踪剂的分布与电流分布之间的确切关系。该关系实际上更为通用,并且对于任意单个文件扩散都是有效的。在淬火情况下,它特别允许获得对称简单排除过程(SSEP)在密度为1/2时示踪剂位置的完整统计信息。

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