arXiv · 1401.1391
Superdiffusion and Transport in 2d-systems with L\'evy Like Quenched Disorder
Abstract
We present an extensive analysis of transport properties in superdiffusive two dimensional quenched random media, obtained by packing disks with radii distributed according to a L\'evy law. We consider transport and scaling properties in samples packed with two different procedures, at fixed filling fraction and at self-similar packing, and we clarify the role of the two procedures in the superdiffusive effects. Using the behavior of the filling fraction in finite size systems as the main geometrical parameter, we define an effective L\'evy exponents that correctly estimate the finite size effects. The effective L\'evy exponent rules the dynamical scaling of the main transport properties and identify the region where superdiffusive effects can be detected.
Explore related subjects
Keep this discovery
Raffaella Burioni, Enrico Ubaldi, Alessandro Vezzani. 2014-01-07. Superdiffusion and Transport in 2d-systems with L\'evy Like Quenched Disorder. https://doi.org/10.1103/physreve.89.022135
Cite the original work for its findings. Save a collection to share your selection of sources.