arXiv · hep-lat/9505019
Meron-Cluster Simulation of the $θ$-Vacuum in the 2-d $O(3)$-Model
Abstract
The 2-d $O(3)$-model with a $θ$-vacuum term is formulated in terms of Wolff clusters. Each cluster carries a half-integer topological charge. The clusters with charge $\pm 1/2$ are identified as merons. At $θ= π$ the merons are bound in pairs inducing a second order phase transition at which the mass-gap vanishes. The construction of an improved estimator for the topological charge distribution makes numerical simulations of the phase transition feasible. The measured critical exponents agree with those of the $k = 1$ Wess-Zumino-Novikov-Witten model. Our results are consistent with Haldane's conjecture for 1-d antiferromagnetic quantum spin chains.
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W. Bietenholz, A. Pochinsky, U. -J. Wiese. 1995-05-24. Meron-Cluster Simulation of the $θ$-Vacuum in the 2-d $O(3)$-Model. https://doi.org/10.1103/physrevlett.75.4524
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