English

Renormalization Group Study of the A+B->0 Diffusion-Limited Reaction

Condensed Matter 2009-10-22 v2

Abstract

The A+B0A + B\to 0 diffusion-limited reaction, with equal initial densities a(0)=b(0)=n0a(0) = b(0) = n_0, is studied by means of a field-theoretic renormalization group formulation of the problem. For dimension d>2d > 2 an effective theory is derived, from which the density and correlation functions can be calculated. We find the density decays in time as a,bC\D(Dt)d/4a,b \sim C\sqrt{\D}(Dt)^{-d/4} for d<4d < 4, with \D=n0Cn0d/2+\D = n_0-C^\prime n_0^{d/2} + \dots, where CC is a universal constant, and CC^\prime is non-universal. The calculation is extended to the case of unequal diffusion constants DADBD_A \neq D_B, resulting in a new amplitude but the same exponent. For d2d \le 2 a controlled calculation is not possible, but a heuristic argument is presented that the results above give at least the leading term in an ϵ=2d\epsilon = 2-d expansion. Finally, we address reaction zones formed in the steady-state by opposing currents of AA and BB particles, and derive scaling properties.

Keywords

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

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