Jamming and percolation in generalized models of random sequential adsorption of linear $k$-mers on a square lattice
Abstract
The jamming and percolation for two generalized models of random sequential adsorption (RSA) of linear -mers (particles occupying adjacent sites) on a square lattice are studied by means of Monte Carlo simulation. The classical random sequential adsorption (RSA) model assumes the absence of overlapping of the new incoming particle with the previously deposited ones. The first model LK is a generalized variant of the RSA model for both -mers and a lattice with defects. Some of the occupying adjacent sites are considered as insulating and some of the lattice sites are occupied by defects (impurities). For this model even a small concentration of defects can inhibit percolation for relatively long -mers. The second model is the cooperative sequential adsorption (CSA) one, where, for each new -mer, only a restricted number of lateral contacts with previously deposited -mers is allowed. Deposition occurs in the case when where is the maximum numbers of the contacts of -mer, and is the fraction of forbidden NN contacts. Percolation is observed only at some interval where the values and depend upon the fraction of forbidden contacts . The value decreases as increases. A logarithmic dependence of the type , where , , is obtained.
Keywords
Cite
@article{arxiv.1507.04590,
title = {Jamming and percolation in generalized models of random sequential adsorption of linear $k$-mers on a square lattice},
author = {Nikolai I. Lebovka and Yuri Yu. Tarasevich and Dmitri O. Dubinin and Valeri V. Laptev and Nikolai V. Vygornitskii},
journal= {arXiv preprint arXiv:1507.04590},
year = {2015}
}
Comments
7 pages, 8 figures, 32 references