Published November 5, 2004 | Version v1
Journal article

Perturbation theory for the effective diffusion constant in a medium of random scatterers

  • 1. DAMTP, CMS, University of Cambridge, Cambridge CB3 0WA (United Kingdom)
  • 2. Rudolf Peierls Centre for Theoretical Physics, University of Oxford, 1 Keble Road, Oxford OX1 3NP (United Kingdom)

Description

We develop perturbation theory and physically motivated resummations of the perturbation theory for the problem of a tracer particle diffusing in a random medium. The random medium contains point scatterers of density ρ uniformly distributed throughout the material. The tracer is a Langevin particle subjected to the quenched random force generated by the scatterers. Via our perturbative analysis, we determine when the random potential can be approximated by a Gaussian random potential. We also develop a self-similar renormalization group approach based on thinning out the scatterers; this scheme is similar to that used with success for diffusion in Gaussian random potentials and agrees with known exact results. To assess the accuracy of this approximation scheme, its predictions are confronted with results obtained by numerical simulation

Availability note (English)

Available online at http://stacks.iop.org/0305-4470/37/10459/a4_44_001.pdf or at the Web site for the Journal of Physics. A, Mathematical and General (ISSN 1361-6447) http://www.iop.org/

Additional details

Publishing Information

Journal Title
Journal of Physics. A, Mathematical and General
Journal Volume
37
Journal Issue
44
Journal Page Range
p. 10459-10477
ISSN
0305-4470
CODEN
JPHAC5

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
36029284
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; S36: MATERIALS SCIENCE;
Descriptors DEI
ACCURACY; DENSITY; DIFFUSION; PARTICLES; PERTURBATION THEORY; POTENTIALS; RANDOMNESS; RENORMALIZATION; SIMULATION
Descriptors DEC
PHYSICAL PROPERTIES