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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Quantum spin model of a cubic ferromagnet in a magnetic field
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Quantum spin model of a cubic ferromagnet in a magnetic field

机译:磁场中立方铁磁体的量子自旋模型

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The zero temperature phase diagram of a one-dimensional ferromagnet with cubic single ion anisotropy in an external magnetic field is studied. The mean-field approximation and the density-matrix renormalization group method are applied. Two phases at finite magnetic fields are identified; a canted phase with spontaneously broken symmetry and a phase with magnetization along the magnetic field. Both methods predict that the canted phase exists even for the single-ion anisotropy strong enough to destroy the magnetic order at zero magnetic field. In contrast to the mean-field theory, the density-matrix renormalization group predicts a reentrant behavior for the model. The character of the phase transition at finite magnetic field has also been considered and the critical index β_c = 1/8 has been found.
机译:研究了在外部磁场中具有立方单离子各向异性的一维铁磁体的零温度相图。应用了平均场近似和密度矩阵重归一化群方法。识别出有限磁场下的两相。自发对称的倾斜相和沿磁场磁化的相。两种方法都预测,即使对于足以破坏零磁场下的磁阶的单离子各向异性,也存在倾斜相。与平均场理论相反,密度矩阵重归一化组预测模型的可重入行为。还考虑了在有限磁场下的相变特性,并发现了临界指数β_c= 1/8。

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