Critical behavior of repulsive linear $k$-mers on triangular lattices
Abstract
Monte Carlo (MC) simulations and finite-size scaling analysis have been carried out to study the critical behavior in a submonolayer two-dimensional gas of repulsive linear -mers on a triangular lattice at coverage . A low-temperature ordered phase, characterized by a repetition of alternating files of adsorbed -mers separated by adjacent empty sites, is separated from the disordered state by a order-disorder phase transition occurring at a finite critical temperature, . The MC technique was combined with the recently reported Free Energy Minimization Criterion Approach (FEMCA), [F. Rom\'a et al., Phys. Rev. B, 68, 205407, (2003)], to predict the dependence of the critical temperature of the order-disorder transformation. The dependence on of the transition temperature, , observed in MC is in qualitative agreement with FEMCA. In addition, an accurate determination of the critical exponents has been obtained for adsorbate sizes ranging between and . For , the results reveal that the system does not belong to the universality class of the two-dimensional Potts model with (, monomers). Based on symmetry concepts, we suggested that the behavior observed for and 3 could be generalized to include larger particle sizes ().
Cite
@article{arxiv.cond-mat/0606391,
title = {Critical behavior of repulsive linear $k$-mers on triangular lattices},
author = {P. M. Pasinetti and F. Roma and J. L. Riccardo and A. J. Ramirez-Pastor},
journal= {arXiv preprint arXiv:cond-mat/0606391},
year = {2009}
}
Comments
17 pages, 13 figures