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Magnetic phase transition for three-dimensional Heisenberg weak random anisotropy model: Monte Carlo study
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Magnetic phase transition for three-dimensional Heisenberg weak random anisotropy model: Monte Carlo study

Ha M. Nguyen and Pai-Yi Hsiao
Journal of Applied Physics, Vol.105(7), 07E125
2009

Abstract

Magnetic phase transition (MPT) to magnetic quasi-long-range order (QLRO) phase in a three-dimensional Heisenberg weak (D/J=4) random anisotropy (RA) model is investigated by Monte Carlo simulation. The isotropic and cubic distributions of RA axes are considered for simple-cubic-lattice systems. Finite-size scaling analysis shows that the critical couplings for the former and latter are Kc =0.704 35 (2) and Kc =0.709 98 (4), respectively. While the critical exponent 1/=1.408 24 (0) is the same for both cases. A second-order MPT to the QLRO phase is therefore evidenced to be possible in favor with the existence of the QLRO predicted by recent functional renormalization group theories. © 2009 American Institute of Physics.

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