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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Consistent LDA' + DMFT approach to the electronic structure of transition metal oxides: Charge transfer insulators and correlated metals
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Consistent LDA' + DMFT approach to the electronic structure of transition metal oxides: Charge transfer insulators and correlated metals

机译:过渡金属氧化物电子结构的一致LDA'+ DMFT方法:电荷转移绝缘体和相关金属

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We discuss the recently proposed LDA' + DMFT approach providing a consistent parameter-free treatment of the so-called double counting problem arising within the LDA + DMFT hybrid computational method for realistic strongly correlated materials. In this approach, the local exchange-correlation portion of the electron-electron interaction is excluded from self-consistent LDA calculations for strongly correlated electronic shells, e.g., d-states of transition metal compounds. Then, the corresponding double-counting term in the LDA' + DMFT Hamiltonian is consistently set in the local Hartree (fully localized limit, FLL) form of the Hubbard model interaction term. We present the results of extensive LDA' + DMFT calculations of densities of states, spectral densities, and optical conductivity for most typical representatives of two wide classes of strongly correlated systems in the paramagnetic phase: charge transfer insulators (MnO, CoO, and NiO) and strongly correlated metals (SrVO_3 and Sr_2RuO_4). It is shown that for NiO and CoO systems, the LDA' + DMFT approach qualitatively improves the conventional LDA + DMFT results with the FLL type of double counting, where CoO and NiO were obtained to be metals. Our calculations also include transition-metal 4s-states located near the Fermi level, missed in previous LDA + DMFT studies of these monoxides. General agreement with optical and the X-ray experiments is obtained. For strongly correlated metals, the LDA' + DMFT results agree well with the earlier LDA + DMFT calculations and existing experiments. However, in general, LDA' + DMFT results give better quantitative agreement with experimental data for band gap sizes and oxygen-state positions compared to the conventional LDA + DMFT method.
机译:我们讨论了最近提出的LDA'+ DMFT方法,该方法为实际的强相关材料的LDA + DMFT混合计算方法中产生的所谓重复计数问题提供了一致的无参数处理。在这种方法中,对于强相关的电子壳(例如过渡金属化合物的d状态),自电子LDA计算中不包括电子-电子相互作用的局部交换相关部分。然后,将LDA'+ DMFT哈密顿量中的相应重复计数项始终以Hubbard模型交互项的局部Hartree(完全局限性极限,FLL)形式设置。我们提供了广泛的LDA'+ DMFT计算结果的结果,这些结果是顺磁相中两大类强相关系统的最典型代表的状态密度,光谱密度和光导率:电荷转移绝缘子(MnO,CoO和NiO)和高度相关的金属(SrVO_3和Sr_2RuO_4)。结果表明,对于NiO和CoO系统,LDA'+ DMFT方法以FLL类型的重复计数从质量上改善了常规LDA + DMFT结果,其中CoO和NiO都是金属。我们的计算还包括位于费米能级附近的过渡金属4s态,这在先前对这些一氧化碳的LDA + DMFT研究中没有出现。获得了与光学和X射线实验的一般协议。对于强相关金属,LDA'+ DMFT结果与早期LDA + DMFT计算和现有实验非常吻合。但是,总的来说,与常规的LDA + DMFT方法相比,LDA'+ DMFT结果在带隙大小和氧态位置方面与实验数据具有更好的定量一致性。

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