Translational symmetry broken magnetization plateau of the S=1 antiferromagnetic Heisenberg chain with competing anisotropies

Sakai, Tôru, Okamoto, Kiyomi, Okunishi, Kouichi, Hashimoto, Masaru, Houda, Tomoki, Furuchi, Rito, Nakano, Hiroki
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Abstract

We investigate the S=1 antiferromagnetic quantum spin chain with the exchange and single-ion anisotropies in a magnetic field, using the numerical exact diagonalization of finite-size clusters, the level spectroscopy analysis, and the density matrix renormalization group (DMRG) method. It is found that a translational symmetry broken magnetization plateau possibly appears at the half of the saturation magnetization, when the anisotropies compete with each other. The level spectroscopy analysis gives the phase diagram at half the saturation magnetization. The DMRG calculation presents the magnetization curves for some typical parameters and clarifies the spin structure in the plateau phase.
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具有竞争各向异性的S=1反铁磁海森堡链的平移对称性破缺磁化平台
利用有限大小团簇的数值精确对角化、能级光谱分析和密度矩阵重整化群(DMRG)方法,研究了具有交换和单离子各向异性的S=1反铁磁量子自旋链。当各向异性相互竞争时,在饱和磁化强度的一半可能出现平移对称性破缺的磁化平台。能级光谱分析给出了半饱和磁化时的相图。DMRG计算给出了一些典型参数的磁化曲线,阐明了平台相的自旋结构。
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