Anomalous Diffusion in Aperiodic Environments
arXiv:cond-mat/9809120 · doi:10.1103/PhysRevE.59.1465
Abstract
We study the Brownian motion of a classical particle in one-dimensional inhomogeneous environments where the transition probabilities follow quasiperiodic or aperiodic distributions. Exploiting an exact correspondence with the transverse-field Ising model with inhomogeneous couplings we obtain many new analytical results for the random walk problem. In the absence of global bias the qualitative behavior of the diffusive motion of the particle and the corresponding persistence probability strongly depend on the fluctuation properties of the environment. In environments with bounded fluctuations the particle shows normal diffusive motion and the diffusion constant is simply related to the persistence probability. On the other hand in a medium with unbounded fluctuations the diffusion is ultra-slow, the displacement of the particle grows on logarithmic time scales. For the borderline situation with marginal fluctuations both the diffusion exponent and the persistence exponent are continuously varying functions of the aperiodicity. Extensions of the results to disordered media and to higher dimensions are also discussed.
11 pages, RevTex
References in corpus (8)
- The Random Transverse Ising Spin Chain and Random Walks
- Aperiodic Ising Quantum Chains
- Anomalous diffusion in disordered media and random quantum spin chains
- Aging and diffusion in low dimensional environments
- Exact Renormalization-Group Study of Aperiodic Ising Quantum Chains and Directed Walks
- Aperiodicity-Induced Second-Order Phase Transition in the 8-State Potts Model
- Random and aperiodic quantum spin chains: A comparative study
- Comparative study of the critical behavior in one-dimensional random and aperiodic environments
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