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Local spin density functional investigations of a manganite with perovskite-type derived structures

机译:具有钙钛矿型派生结构的锰矿的局部自旋密度泛函研究

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摘要

The electronic and magnetic structures of the perovskite CaMnO_3 are self-consistently calculated assuming two crystal structures at the same formula unit volume within the local spin density functional theory and the augmented spherical wave (ASW) method. From the comparisons of energy differences between the different magnetic states the ground state configuration is an insulator with G-type ordering. This result together with the magnitudes of the magnetic moments are in agreement with experiment. The influence of mixing between Mn and O is found spin dependent from the analysis of the crystal orbital overlap population (COOP) which enable to describe the chemical bond. The calculations underline a feature of a half metallic ferromagnet which could be connected with the colossal magnetoresistance (CMR) property of related compounds.
机译:钙钛矿CaMnO_3的电子和磁性结构是自洽计算的,假设在局部自旋密度泛函理论和增强球形波(ASW)方法中,两个晶体结构在相同的公式单位体积内。通过比较不同磁态之间的能量差,基态配置是具有G型有序的绝缘体。这个结果和磁矩的大小与实验一致。根据对晶体轨道重叠种群(COOP)的分析,发现了Mn和O之间混合的影响是自旋的,该分析能够描述化学键。计算结果强调了半金属铁磁体的特征,该特征可以与相关化合物的巨大磁阻(CMR)特性相关。

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