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arXiv:0911.0653·v1·Strongly Correlated Electrons

The Phase Transition of the Spin-1/2 Heisenberg Model with a Spatially Staggered Anisotropy on the Square Lattice

F.-J. Jiang🇺🇸

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Abstract

Puzzled by the indication of a new critical theory for the spin-1/2 Heisenberg model with a spatially staggered anisotropy on the square lattice as suggested in \cite{Wenzel08}, we re-investigate the phase transition of this model induced by dimerization. We focus on studying the finite-size scaling of the observables and , where stands for the spatial box sizes used in the simulations and with is the spin-stiffness in -direction. We find by performing finite-size scaling using the observable , which corresponds to the spatial direction with a fixed antiferromagnetic coupling, one would suffer a much less severe correction compared to that of using . Therefore is a better quantity than for finite-size scaling analysis concerning the limitation for the availability of large volumes data in our study. Remarkably, by employing the method of fixing the aspect-ratio of spatial winding numbers squared in the simulations, even from which receives the most serious correction among the observables considered in this study, we arrive at a value for the critical exponent which is consistent with the expected O(3) value by using only up to data points.

Comments: 4 pages, 7 figures

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