Generalized Fokker-Planck equation for the active Brownian motion

Fuente: arXiv
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Main Authors: Pillai, Sanju S, Muhsin, M, Sahoo, M
Format: Preprint
Published: 2025
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author Pillai, Sanju S
Muhsin, M
Sahoo, M
author_facet Pillai, Sanju S
Muhsin, M
Sahoo, M
contents We investigate the dynamics of an inertial active Ornstein-Uhlenbeck particle suspended in a non-Markovian environment. The particle is additionally subjected to external forces, such as harmonic confinement and a magnetic field. Motivated by the importance of understanding the non-Markovian behavior of complex environments, we examine the impact of a viscoelastic medium by employing the Jeffrey fluid framework for modeling the particle motion, which effectively captures both viscous and elastic contributions of the environment. Within this model, we explicitly derive the corresponding Fokker-Planck equation for each case. Building on this, we extend the analysis to general non-Markovian framework and derive the corresponding generalized Fokker-Planck equation for a free active particle. Furthermore, we obtain the probability distribution function valid for arbitrary memory kernel under various conditions, including both free and confined motion with and without a magnetic field. To the best of our knowledge, this represents the first attempt to establish such a comprehensive formalism for the probabilistic description of an active particle subjected to non-Markovian memory effects. This formulation provides a solid basis for analyzing the dynamics of an active particle in a non-Markovian environment, such as mucus and polymer solutions, and further allows the study of relaxation in confined geometries and responses to external fields.
format Preprint
id arxiv_https___arxiv_org_abs_2510_12240
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generalized Fokker-Planck equation for the active Brownian motion
Pillai, Sanju S
Muhsin, M
Sahoo, M
Soft Condensed Matter
We investigate the dynamics of an inertial active Ornstein-Uhlenbeck particle suspended in a non-Markovian environment. The particle is additionally subjected to external forces, such as harmonic confinement and a magnetic field. Motivated by the importance of understanding the non-Markovian behavior of complex environments, we examine the impact of a viscoelastic medium by employing the Jeffrey fluid framework for modeling the particle motion, which effectively captures both viscous and elastic contributions of the environment. Within this model, we explicitly derive the corresponding Fokker-Planck equation for each case. Building on this, we extend the analysis to general non-Markovian framework and derive the corresponding generalized Fokker-Planck equation for a free active particle. Furthermore, we obtain the probability distribution function valid for arbitrary memory kernel under various conditions, including both free and confined motion with and without a magnetic field. To the best of our knowledge, this represents the first attempt to establish such a comprehensive formalism for the probabilistic description of an active particle subjected to non-Markovian memory effects. This formulation provides a solid basis for analyzing the dynamics of an active particle in a non-Markovian environment, such as mucus and polymer solutions, and further allows the study of relaxation in confined geometries and responses to external fields.
title Generalized Fokker-Planck equation for the active Brownian motion
topic Soft Condensed Matter
url https://arxiv.org/abs/2510.12240