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Deposition-evaporation stochastic systems in two and higher dimensions
Authors:Niu-Niu Chen  M D Grynberg  R B Stinchcombe
Institution:(1) Theoretical Physics, Department of Physics, University of Oxford, OX1 3NP Oxford, U.K.;(2) Present address: Physics Department, Rutgers University, 08855 Piscataway, New Jersey;(3) Present address: Departamento de Fisica, Comision Nacional de Energia Atomica, 1429 Buenos Aires, Argentina
Abstract:We study the stochastic dynamics of deposition-evaporation cooperative processes of dimers, trimers, etc., in two- and higher-dimensional lattices. The dimer system in bipartite lattices allows for an exact solution of dynamic correlations and scaling functions by means of a quantum spin equivalence. Autocorrelations exhibit a diffusive asymptotic kinetics and crossovers of different dynamic regimes in highly anisotropic lattices. Monte Carlo simulations combined with finite-size scaling arguments support the validity of the diffusive picture in more general situations. Steady-state coverages and diffusion constants are obtained using mean-field approaches, spin wave calculations, and random walk analyses in nearly jammed configurations.
Keywords:Deposition  evaporation  jamming  two-dimensional  dimer
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