Renormalization Group Study of the A+B->0 Diffusion-Limited Reaction
Abstract
The diffusion-limited reaction, with equal initial densities , is studied by means of a field-theoretic renormalization group formulation of the problem. For dimension an effective theory is derived, from which the density and correlation functions can be calculated. We find the density decays in time as for , with , where is a universal constant, and is non-universal. The calculation is extended to the case of unequal diffusion constants , resulting in a new amplitude but the same exponent. For a controlled calculation is not possible, but a heuristic argument is presented that the results above give at least the leading term in an expansion. Finally, we address reaction zones formed in the steady-state by opposing currents of and particles, and derive scaling properties.
Cite
@article{arxiv.cond-mat/9412063,
title = {Renormalization Group Study of the A+B->0 Diffusion-Limited Reaction},
author = {Benjamin P. Lee and John Cardy},
journal= {arXiv preprint arXiv:cond-mat/9412063},
year = {2009}
}
Comments
17 pages, REVTeX, 13 compressed figures, included with epsf. Eq. (6.12) corrected, and a moderate rewriting of the introduction. Accepted for publication in J. Stat. Phys