English

Mean first-passage time of an anisotropic diffusive searcher

Statistical Mechanics 2017-02-08 v2

Abstract

We consider an anisotropic needle-like Brownian particle with nematic symmetry confined in a 2D2D domain. For this system, the coupling of translational and rotational diffusion makes the process x(t){\bf x} (t) of the positions of the particle non Markovian. Using scaling arguments, a Gaussian approximation and numerical methods, we determine the mean first passage time T\langle\mathbf{T}\rangle of the particle to a target of radius aa and show in particular that Ta1/2\langle\mathbf{T}\rangle \sim a^{-1/2} for a0a\to 0, in contrast with the classical logarithmic divergence obtained in the case of an isotropic 2D2D Brownian particle.

Keywords

Cite

@article{arxiv.1701.09008,
  title  = {Mean first-passage time of an anisotropic diffusive searcher},
  author = {Nicolas Levernier and Olivier Bénichou and Raphaël Voituriez},
  journal= {arXiv preprint arXiv:1701.09008},
  year   = {2017}
}