Evidence of Unconventional Universality Class in a Two-Dimensional Dimerized Quantum Heisenberg Model
Statistical Mechanics
2008-09-22 v2 Strongly Correlated Electrons
Abstract
The two-dimensional - dimerized quantum Heisenberg model is studied on the square lattice by means of (stochastic series expansion) quantum Monte Carlo simulations as a function of the coupling ratio \hbox{}. The critical point of the order-disorder quantum phase transition in the - model is determined as \hbox{} by finite-size scaling for up to approximately quantum spins. By comparing six dimerized models we show, contrary to the current belief, that the critical exponents of the - model are not in agreement with the three-dimensional classical Heisenberg universality class. This lends support to the notion of nontrivial critical excitations at the quantum critical point.
Cite
@article{arxiv.0805.2500,
title = {Evidence of Unconventional Universality Class in a Two-Dimensional Dimerized Quantum Heisenberg Model},
author = {Sandro Wenzel and Leszek Bogacz and Wolfhard Janke},
journal= {arXiv preprint arXiv:0805.2500},
year = {2008}
}
Comments
4+ pages, 5 figures, version as published