arXiv · cond-mat/9707116
Disorder-Induced Anomalous Kinetics in the $A+A \to \emptyset$ Reaction
Abstract
We address the two-dimensional bimolecular annihilation reaction $A + A \to \emptyset$ in the presence of random impurities. Impurities with sufficiently long-ranged interaction energies are known to lead to anomalous diffusion, $ \sim t^{1-δ}$, in the absence of reaction. Applying renormalization group theory to a field theoretic description of this reaction, we find that this disorder also leads to anomalous kinetics in the long time limit: $c(t) \sim t^{δ-1}$. This kinetics results because the disorder forces the system into the (sub)diffusion controlled regime, in which the kinetics must become anomalous.
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Jeong-Man Park, Michael W. Deem. 1998-02-12. Disorder-Induced Anomalous Kinetics in the $A+A \to \emptyset$ Reaction. https://doi.org/10.1103/physreve.57.3618
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