Published June 16, 2023 | Version v1

Active Brownian particles in a circular disk with an absorbing boundary

  • 1. ROR icon Universität Innsbruck

Description

We solve the time-dependent Fokker-Planck equation for a two-dimensional active Brownian particle exploring a circular region with an absorbing boundary. Using the passive Brownian particle as basis states and dealing with the activity as a perturbation, we provide a matrix representation of the Fokker-Planck operator and we express the propagator in terms of the perturbed eigenvalues and eigenfunctions. Alternatively, we show that the propagator can be expressed as a combination of the equilibrium eigenstates with weights depending only on time and on the initial conditions, and obeying exact iterative relations. Our solution allows also obtaining the survival probability and the first-passage time distribution. These latter quantities exhibit peculiarities induced by the non-equilibrium character of the dynamics,; in particular, they display a strong dependence on the activity of the particle and, to a less extent, also on its rotational diffusivity.

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Additional details

Related works

Funding

FWF Austrian Science Fund
Target-Search Strategies of Smart Active Agents P35872-N
FWF Austrian Science Fund
Target Search of Single Active Brownian Particles and Run-and-Tumble Agents P 35580-N