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首页> 外文期刊>Письма в Журнал экспериментальной и теоретической физики >CONSISTENT LDA'+DMFT - AN UNAMBIGUOUS WAY TO AVOID DOUBLE COUNTING PROBLEM: NIO TEST
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CONSISTENT LDA'+DMFT - AN UNAMBIGUOUS WAY TO AVOID DOUBLE COUNTING PROBLEM: NIO TEST

机译:一致的LDA'+ DMFT-避免双重计数问题的明确方法:NIO测试

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摘要

We present a consistent way of treating a double counting problem unavoidably arising within the LDA+DMFT combined approach to realistic calculations of electronic structure of strongly correlated systems. The main obstacle here is the absence of systematic (e.g. diagrammatic) way to express LDA (local density approximation) contribution to exchange correlation energy appearing in the density functional theory. It is not clear then, which part of interaction entering DMFT (dynamical mean-field theory) is already taken into account through LDA calculations. Because of that, up to now there is no accepted unique expression for the double counting correction in LDA+DMFT. To avoid this problem we propose here the consistent LDA'+DMFT approach, where LDA exchange correlation contribution is explicitly excluded for correlated states (bands) during self-consistent band structure calculations. What is left out of Coulomb interaction for those strongly correlated states (bands) is its non-local part, which is not included in DMFT, and the local Hartree like contribution. Then the double counting correction is uniquely reduced to the local Hartree contribution. Correlations for strongly correlated states are then directly accounted for via the standard DMFT. We further test the consistent LDA'+DMFT scheme and compare it with conventional LDA+DMFT calculating the electronic structure of NiO. Opposite to the conventional LDA+DMFT our consistent LDA'+DMFT approach unambiguously produces the insulating band structure in agreement with experiments.
机译:我们提出了一种一致的方式来处理不可避免地在LDA + DMFT组合方法中不可避免地出现的重复计数问题,以对强相关系统的电子结构进行实际计算。这里的主要障碍是缺乏表达LDA(局部密度逼近)对交换在密度泛函理论中出现的相关能的贡献的系统(例如图解)方式。尚不清楚,通过LDA计算已经考虑了进入DMFT(动态平均场理论)的相互作用的哪一部分。因此,到目前为止,LDA + DMFT中的重复计数校正还没有公认的唯一表达式。为了避免这个问题,我们在这里提出了一致的LDA'+ DMFT方法,其中在自洽频带结构计算期间,对于相关状态(频带),LDA交换相关贡献被明确排除。对于那些高度相关的状态(带),库仑交互作用所遗漏的是它的非本地部分(不包含在DMFT中)和本地Hartree类贡献。然后,将重复计数校正唯一地减少到本地Hartree贡献。然后,通过标准DMFT直接考虑高度相关状态的相关性。我们进一步测试了一致的LDA'+ DMFT方案,并将其与计算NiO的电子结构的常规LDA + DMFT进行了比较。与传统的LDA + DMFT相反,我们一致的LDA'+ DMFT方法与实验一致地明确地产生了绝缘带结构。

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