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19982007
most citedReaction Front in an A+B -> C Reaction-Subdiffusion Process

317 citations · 414 across the 8 of their papers we have counts for

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cond-mat.stat-mech200716 cited

Number of distinct sites visited by a subdiffusive random walker

Santos Bravo Yuste, J. Klafter, Katja Lindenberg

The asymptotic mean number of distinct sites visited by a subdiffusive continuous time random walker in two dimensions seems not to have been explicitly calculated anywhere in the…

cond-mat.stat-mech20072 cited

Noise-induced phase transitions in field-dependent relaxational dynamics: The Gaussian ansatz

F. J. Cao, K. Wood, K. Lindenberg

We present an analytic mean field theory for relaxational dynamics in spatially extended systems that undergo purely noise-induced phase transitions to ordered states. The theory a…

cond-mat.stat-mech20052 cited

Stokes' Drift and Hypersensitive Response with Dichotomous Markov Noise

I. Bena, R. Kawai, C. Van den Broeck +1

Stochastic Stokes' drift and hypersensitive transport driven by dichotomous noise are theoretically investigated. Explicit mathematical expressions for the asymptotic probability d…

cond-mat.stat-mech200433 cited

Comment on "Mean First Passage Time for Anomalous Diffusion"

S. B. Yuste, Katja Lindenberg

We correct a previously erroneous calculation [Phys. Rev. E 62, 6065 (2000)] of the mean first passage time of a subdiffusive process to reach either end of a finite interval in on…

cond-mat.stat-mech2004317 cited

Reaction Front in an A+B -> C Reaction-Subdiffusion Process

S. B. Yuste, L. Acedo, Katja Lindenberg

We study the reaction front for the process A+B -> C in which the reagents move subdiffusively. Our theoretical description is based on a fractional reaction-subdiffusion equation…

cond-mat.stat-mech200344 cited

Self-Similarity in Random Collision Processes

Daniel ben-Avraham, Eli Ben-Naim, Katja Lindenberg +1

Kinetics of collision processes with linear mixing rules are investigated analytically. The velocity distribution becomes self-similar in the long time limit and the similarity fun…