4.6 Article

Anomalous diffusion in time-fluctuating non-stationary diffusivity landscapes

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 18, Issue 34, Pages 23840-23852

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6cp03101c

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We investigate the ensemble and time averaged mean squared displacements for particle diffusion in a simple model for disordered media by assuming that the local diffusivity is both fluctuating in time and has a deterministic average growth or decay in time. In this study we compare computer simulations of the stochastic Langevin equation for this random diffusion process with analytical results. We explore the regimes of normal Brownian motion as well as anomalous diffusion in the sub- and superdiffusive regimes. We also consider effects of the inertial term on the particle motion. The investigation of the resulting diffusion is performed for unconfined and confined motion.

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