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Model GW study of the late transition metal monoxides

机译:晚期过渡金属一氧化碳的GW模型研究

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The model GW method [F. Gygi and A. Baldereschi, Phys. Rev. Lett. 62, 2160 (1989)]10.1103/PhysRevLett.62.2160 is an efficient simplification to the standard GW approximation which uses model dielectric function to describe the long range Coulomb interactions in semiconductors. In this work, the model GW method is used to calculate the quasiparticle band structures of MnO, FeO, CoO, and NiO. All four late transition metal monoxides are predicted to be insulators. The band gaps, magnetic moments, and quasiparticle spectra are in good agreement with the experiments, except for the satellite structures which are missing in the density of states because the model GW self-energy is static. The high accuracy of model GW is due to the usage of the accurate dielectric constants in the construction of the model dielectric functions which ensures the correct asymptotic behavior of the long range Coulomb interactions. Besides, we find that the transition metal 4s states are irrelevant to the formation of the band gaps, which supports the local approaches and the experimental interpretations of the band gaps by photoemission and electron energy loss spectroscopy, while contradicts the recent calculations by hybrid functionals, exact exchange, and one shot GW approximations.
机译:模型GW方法[F. Gygi和A. Baldereschi,物理学。牧师62,2160(1989)] 10.1103 / PhysRevLett.62.2160是对标准GW近似的有效简化,它使用模型介电函数描述了半导体中的长距离库仑相互作用。在这项工作中,模型GW方法用于计算MnO,FeO,CoO和NiO的准粒子能带结构。预计所有四种晚过渡金属一氧化物都是绝缘体。带隙,磁矩和准粒子谱与实验吻合得很好,除了卫星模型由于状态模型GW自能是静态的而缺少状态密度。模型GW的高精度是由于在模型介电函数的构造中使用了准确的介电常数,该模型可确保长距离库仑相互作用的正确渐近行为。此外,我们发现过渡金属4s态与带隙的形成无关,这支持了通过光发射和电子能量损失谱学对带隙的局部方法和实验解释,而与最近通过混合泛函的计算相矛盾,精确交换,以及一枪GW近似值。

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