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Theory for magnetic anisotropy of field-induced insulator-to-metal transition in cubic kondo insulator YbB12

机译:立方近藤绝缘子YbB12中场致绝缘体到金属过渡的磁各向异性理论

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摘要

Magnetization and energy gap of Kondo insulator YbB12 are calculated theoretically based on the previously proposed tight-binding model composed of Yb 5d epsilon and 4f Gamma(8) orbitals. It is found that magnetization curves are almost isotropic, naturally expected from the cubic symmetry, but that the gap-closing field has an anisotropy: the gap closes faster for the field in (100) direction than in (I 10) and (111) directions, in accord with the experiments. This is qualitatively understood by considering the maximal eigenvalues of the total angular momentum operators projected on each direction of the magnetic field. But the numerical calculation based on the band model yields better agreement with the experiment.
机译:Kondo绝缘子YbB12的磁化和能隙理论上是基于先前提出的由Yb 5d epsilon和4f Gamma(8)轨道组成的紧密结合模型计算的。已经发现,磁化曲线几乎是各向同性的,这是立方对称性所自然期望的,但是间隙闭合场具有各向异性:在(100)方向上,间隙的闭合比在(I 10)和(111)方向上的闭合更快。指示,与实验一致。通过考虑投射在磁场每个方向上的总角动量算符的最大特征值,可以定性地理解这一点。但是基于能带模型的数值计算与实验结果吻合得更好。

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