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Contribution of on-site Coulomb repulsion energy to structural, electronic and magnetic properties of SrCoO3 for different space groups: first-principles study

机译:现场库仑排斥能量对不同空间组的SRCOO3结构,电子和磁性的贡献:第一原理研究

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摘要

We report structural, electronic, and magnetic properties of SrCoO3 in Pm3̅m and P4/mbm space groups, which are calculated by using generalized gradient approximation corrected with on-site Coulomb repulsion U and exchange energies J. The cubic lattice parameter a and local magnetic moments of Co (μCo) are optimized by varying U at Co 3d site. Employing ultrasoft pseudopotential, the values of U = 8 eV and J = 0.75 eV are the best choice for Pm3̅m space group. We found the value of μCo = 2.56 μB, which is consistent with the previous results. It was also found that Co 3d, hybridized with O 2p, is the main contributor to ferromagnetic metallic properties. Besides, norm-conserving pseudopotential promotes a, which is in good agreement with experimental result. However, it is not suitable for P4/mbm space group. By using ultrasoft pseudopotential, the value of U = 3 eV (J = 0.75) is the most suitable for P4/mbm group. Ferromagnetic metallic properties, Jahn-Teller distortion, and reasonable lattice parameters have been obtained. This study shows that U has significant contribution to the calculated properties and also points out that P4/mbm space group with US-PP is suitable to describe experimental results.
机译:我们在PM3̅M和P4 / MBM空间组中报告SRCOO3的结构,电子和磁性,通过使用现场库仑排斥U和交换能量J的广义梯度近似来计算。立方格参数A和局部磁矩CO(μCO)通过在CO 3D位点改变U来优化。使用超声波伪软件,U = 8eV和J = 0.75eV的值是PM3̅M空间组的最佳选择。我们发现μCo=2.56μB的值,这与先前的结果一致。还发现与O 2P杂交的CO 3D是铁磁金属性质的主要因素。此外,常规保护伪能促进A,这与实验结果吻合良好。但是,它不适用于P4 / MBM空间组。通过使用超声波伪软件,U = 3eV(J = 0.75)的值最适合P4 / MBM组。已经获得了铁磁性金属性质,Jahn-Teller畸变和合理的晶格参数。本研究表明,您对计算的性质具有重大贡献,并指出了具有US-PP的P4 / MBM空间组适合描述实验结果。

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