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Dynamical transitions in correlated driven diffusion in a periodic potential

arXiv:cond-mat/9701134 · doi:10.1103/PhysRevLett.78.1295

Abstract

The diffusion of a two-dimensional array of particles driven by a constant force in the presence of a periodic external potential exhibits a hierarchy of dynamical phase transitions when the driving force is varied. This behavior can be explained by a simple phenomenological approach which reduces the system of strongly interacting particles to weakly interacting quasi-particles (kinks). The richness of the strongly coupled system is however not lost because, contrary to a single-Brownian particle, the array shows an hysteretic behavior even at non-zero temperature. The present investigation can be viewed as a first step toward understanding nanotribology.

4 pages, 3 pictures, revtex to appear in Phys Rev. Lett