Universal asymptotic correlation functions for point group C6v and an observation for triangular lattice Q-state Potts model
Abstract
We investigate universal forms for asymptotic correlation functions of off-critical systems that possess C6v symmetry following the argument for C4v symmetry in Phys.~Rev.~E 102,~032141. Unlike the C4v case, a minimal form exists that contains only two free parameters: the normalization constant and modulus. Using this form as a building block, we can construct next asymptotic forms to the minimal one. We perform large-scale Monte Carlo simulations of the triangular lattice Q-state Potts model above the transition temperature and successfully obtain numerical evidence to support a wide applicability of the minimal form to lattice models, including unsolvable ones. From the calculated minimal form, we derive the universal shape of equilibrium crystals in the honeycomb lattice Potts model described by an algebraic curve of genus 1. Although the curve differs from those obtained in the C4v case, the latters also have genus 1. We indicate that the birational equivalence concept can play an important role in comparing asymptotic forms for different point group symmetries, for example, C6v and C4v.
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