Scinovex
articleTop 1% cited

Models of anomalous diffusion in crowded environments

Soft Matter · 2012 · Vol. 8(35) · pp. 9043–9043
Igor M. Sokolov

Abstract

A particle's motion in crowded environments often exhibits anomalous diffusion, whose nature depends on the situation at hand and is formalized within different physical models. Thus, such environments may contain traps, labyrinthine paths or macromolecular structures, which the particles may be attached to. Physical assumptions are translated into mathematical models which often come with nice mathematical instruments for their description, e.g. fractional diffusion equations. The beauty of the instrument sometimes seduces an investigator to use it without any connection to the physical model. The author hopes that the present discussion will reduce the danger of such inappropriate use.

Fractional Differential Equations SolutionsGranular flow and fluidized bedsMaterial Dynamics and PropertiesDiffusionAnomalous diffusionStatistical physicsConnection (principal bundle)Motion (physics)BeautyComputer scienceTheoretical physicsClassical mechanicsPhysics
Citations
554
FWCI
29.25
field-weighted impact
References
94
Percentile
100%
vs. same field & year
Citations per year
References
Anomalous transit-time dispersion in amorphous solids
Physical review. B, Solid state · 1975 · 3,061 citations
Decay of the Velocity Autocorrelation Function
Physical review. A, General physics · 1970 · 1,351 citations
Anomalous Diffusion of Proteins Due to Molecular Crowding
Biophysical Journal · 2005 · 789 citations
Models of traps and glass phenomenology
Journal of Physics A Mathematical and General · 1996 · 476 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.