Normal diffusion arises in a natural way from random walks with uncorrelated steps of bounded variance, or, in the deterministic setting, from wandering trajectories of a chaotic map. There are many ways in which such a picture fails, and, for instance, the variance of the traveller’s position does not grow linearly with time. We review the basic mechanisms that induce deviations from normal transport (long waiting times, broad step length distributions, intermittency, topological issues), and we describe how their origin can be traced back in stochastic and deterministic settings, illustrating a few techniques that allow for a quantitative analysis of such anomalies
15 pages, Latex, 6 figuresChaotic deterministic dynamics of a particle can give rise to diffusive Br...
A random walk model is presented which exhibits a transition from standard to anomalous diffusion a...
The purpose of this tutorial is to introduce the main concepts behind normal and anomalous diusion. ...
Setting the scene ergodic hypothesis Gibbs ensembles dynamical systems statistical mechanics thermod...
In normal lateral diffusion, the mean-square displacement of the diffusing species is proportional t...
In view of the interest in the occurrence of anomalous diffusion (<r2(t)>~t2H, 0 < H < ...
Consider a chaotic dynamical system generating diffusionlike Brownian motion. Consider a second, non...
Modern microscopic techniques following the stochastic motion of labelled tracer particles have unco...
More and more stochastic transport phenomena in various real-world systems prove to belong to the cl...
Anomalous diffusion processes are those whose variances deviate from the usual linear scaling with r...
We have introduced to the problem of chaotic diffusion generated by deterministic dynamical systems....
We study the interplay between a deterministic process of weak chaos, responsible for the anomalous ...
We study the interplay between a deterministic process of weak chaos, responsible for the anomalous ...
We carry out a detailed study of the motion of particles driven by a constant external force over a ...
In normal lateral diffusion, the mean-square displacement of the diffusing species is proportional t...
15 pages, Latex, 6 figuresChaotic deterministic dynamics of a particle can give rise to diffusive Br...
A random walk model is presented which exhibits a transition from standard to anomalous diffusion a...
The purpose of this tutorial is to introduce the main concepts behind normal and anomalous diusion. ...
Setting the scene ergodic hypothesis Gibbs ensembles dynamical systems statistical mechanics thermod...
In normal lateral diffusion, the mean-square displacement of the diffusing species is proportional t...
In view of the interest in the occurrence of anomalous diffusion (<r2(t)>~t2H, 0 < H < ...
Consider a chaotic dynamical system generating diffusionlike Brownian motion. Consider a second, non...
Modern microscopic techniques following the stochastic motion of labelled tracer particles have unco...
More and more stochastic transport phenomena in various real-world systems prove to belong to the cl...
Anomalous diffusion processes are those whose variances deviate from the usual linear scaling with r...
We have introduced to the problem of chaotic diffusion generated by deterministic dynamical systems....
We study the interplay between a deterministic process of weak chaos, responsible for the anomalous ...
We study the interplay between a deterministic process of weak chaos, responsible for the anomalous ...
We carry out a detailed study of the motion of particles driven by a constant external force over a ...
In normal lateral diffusion, the mean-square displacement of the diffusing species is proportional t...
15 pages, Latex, 6 figuresChaotic deterministic dynamics of a particle can give rise to diffusive Br...
A random walk model is presented which exhibits a transition from standard to anomalous diffusion a...
The purpose of this tutorial is to introduce the main concepts behind normal and anomalous diusion. ...