Universal framework for the long-time position distribution of free active particles

Author:

Santra IonORCID,Basu UrnaORCID,Sabhapandit SanjibORCID

Abstract

Abstract Active particles self-propel themselves with a stochastically evolving velocity, generating a persistent motion leading to a non-diffusive behavior of the position distribution. Nevertheless, an effective diffusive behavior emerges at times much larger than the persistence time. Here we develop a general framework for studying the long-time behavior for a class of active particle dynamics and illustrate it using the examples of run-and-tumble particle, active Ornstein–Uhlenbeck particle, active Brownian particle, and direction reversing active Brownian particle. Treating the ratio of the persistence-time to the observation time as the small parameter, we show that the position distribution generically satisfies the diffusion equation at the leading order. We further show that the sub-leading contributions, at each order, satisfies an inhomogeneous diffusion equation, where the source term depends on the previous order solutions. We explicitly obtain a few sub-leading contributions to the Gaussian position distribution. As a part of our framework, we also prescribe a way to find the position moments recursively and compute the first few explicitly for each model.

Funder

Science and Engineering Research Board (SERB), India

Publisher

IOP Publishing

Subject

General Physics and Astronomy,Mathematical Physics,Modeling and Simulation,Statistics and Probability,Statistical and Nonlinear Physics

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Tagged particle behavior in a harmonic chain of direction-reversing active Brownian particles;Journal of Statistical Mechanics: Theory and Experiment;2024-08-28

2. Diffusion dynamics of an overdamped active ellipsoidal Brownian particle in two dimensions;Journal of Statistical Mechanics: Theory and Experiment;2024-07-26

3. Chirality reversing active Brownian motion in two dimensions;Journal of Statistical Mechanics: Theory and Experiment;2023-06-01

4. Long time behavior of run-and-tumble particles in two dimensions;Journal of Statistical Mechanics: Theory and Experiment;2023-03-01

5. Dynamical fluctuations of a tracer coupled to active and passive particles;Journal of Physics: Complexity;2023-03-01

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