Roughening of k-mer-growing interfaces in stationary regimes.
Identifieur interne : 000823 ( Main/Exploration ); précédent : 000822; suivant : 000824Roughening of k-mer-growing interfaces in stationary regimes.
Auteurs : M D Grynberg [Argentine] ; F I Schaposnik Massolo [Corée du Sud]Source :
- Physical review. E [ 2470-0053 ] ; 2018.
Abstract
We discuss the steady-state dynamics of interfaces with periodic boundary conditions arising from body-centered solid-on-solid growth models in 1+1 dimensions involving random aggregation of extended particles (dimers, trimers, ...,k-mers). Roughening exponents as well as width and maximal height distributions can be evaluated directly in stationary regimes by mapping the dynamics onto an asymmetric simple exclusion process with k-type of vacancies. Although for k≥2 the dynamics is partitioned into an exponentially large number of sectors of motion, the results obtained in some generic cases strongly suggest a universal scaling behavior closely following that of monomer interfaces.
DOI: 10.1103/PhysRevE.97.022125
PubMed: 29548243
Affiliations:
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<front><div type="abstract" xml:lang="en">We discuss the steady-state dynamics of interfaces with periodic boundary conditions arising from body-centered solid-on-solid growth models in 1+1 dimensions involving random aggregation of extended particles (dimers, trimers, ...,k-mers). Roughening exponents as well as width and maximal height distributions can be evaluated directly in stationary regimes by mapping the dynamics onto an asymmetric simple exclusion process with k-type of vacancies. Although for k≥2 the dynamics is partitioned into an exponentially large number of sectors of motion, the results obtained in some generic cases strongly suggest a universal scaling behavior closely following that of monomer interfaces.</div>
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