English

Fractional Brownian motion with a reflecting wall

Statistical Mechanics 2018-02-21 v2

Abstract

Fractional Brownian motion, a stochastic process with long-time correlations between its increments, is a prototypical model for anomalous diffusion. We analyze fractional Brownian motion in the presence of a reflecting wall by means of Monte Carlo simulations. While the mean-square displacement of the particle shows the expected anomalous diffusion behavior x2tα\langle x^2 \rangle \sim t^\alpha, the interplay between the geometric confinement and the long-time memory leads to a highly non-Gaussian probability density function with a power-law singularity at the barrier. In the superdiffusive case, α>1\alpha> 1, the particles accumulate at the barrier leading to a divergence of the probability density. For subdiffusion, α<1\alpha < 1, in contrast, the probability density is depleted close to the barrier. We discuss implications of these findings, in particular for applications that are dominated by rare events.

Keywords

Cite

@article{arxiv.1711.05232,
  title  = {Fractional Brownian motion with a reflecting wall},
  author = {Alexander H. O. Wada and Thomas Vojta},
  journal= {arXiv preprint arXiv:1711.05232},
  year   = {2018}
}

Comments

6 pages, 6 figures. Final version as published

R2 v1 2026-06-22T22:45:52.889Z