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Hybrid treatment of spatio-temporal behavior in surface reactions with coexisting immobile and highly mobile reactants
Author(s) -
M. Tammaro,
M. Sabella,
J. W. Evans
Publication year - 1995
Publication title -
the journal of chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.071
H-Index - 357
eISSN - 1089-7690
pISSN - 0021-9606
DOI - 10.1063/1.469929
Subject(s) - bistability , chemistry , chemical physics , lattice (music) , monte carlo method , bifurcation , dimer , statistical physics , physics , nonlinear system , quantum mechanics , statistics , mathematics , organic chemistry , acoustics
For surface reactions on single‐crystal substrates which involve highly mobile adspecies, there is a vast separation in natural time and length scales. Adspecies hop rates can be many orders of magnitude larger than rates for other processes. Strong spatial correlations or ordering can exist on the atomic scale, while spatial pattern formation occurs on a macroscopic scale due to high diffusivity. An efficient analysis of such systems is provided by a ‘‘hybrid treatment’’ which we apply here to the monomer–dimer surface reaction model in the case of coexisting immobile dimer adspecies and highly mobile monomer adspecies. Specifically, we combine a mean‐field treatment of the ‘‘randomized’’ mobile adspecies, and a lattice‐gas description of the immobile adspecies. Monte Carlo simulations then reveal bistability and ‘‘critical’’ bifurcation phenomena, while precisely accounting for the influence of correlations in the immobile adspecies distribution. A corresponding analysis of the evolution of macroscopic ...

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