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Bond disproportionation and dynamical charge fluctuations in the perovskite rare-earth nickelates

机译:钙钛矿稀土镍酸盐中的键歧化和动态电荷波动

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摘要

We present a theory describing the local electronic properties of the perovskite rare-earth nickelates-materials which have negative charge transfer energies, strong O 2p - Ni 3d covalence, and breathing-mode lattice distortions at the origin of highly studied metal-insulator and antiferromagnetic ordering transitions. Utilizing a full-orbital, full-correlation double-cluster approach, we find strong charge fluctuations, in agreement with a bond disproportionation interpretation. The double-cluster formulation permits the inclusion of necessary orbital degeneracies and Coulomb interactions to calculate resonant x-ray spectral responses, with which we find excellent agreement with well-established experimental results. This previously absent, crucial link between theory and experiment provides validation of the recently proposed bond disproportionation theory, and provides an analysis methodology for spectroscopic studies of engineered phases of nickelates and other high-valence transition-metal compounds.
机译:我们提出了一种理论,描述了钙钛矿稀土镍酸盐材料的局部电子性质,该材料具有负电荷转移能,强大的O 2p-Ni 3d价,以及在经过高度研究的金属绝缘体和反铁磁的起源下的呼吸模式晶格畸变排序过渡。利用全轨道,全相关的双簇方法,我们发现电荷波动很大,与键不成比例的解释相符。双簇配方允许包含必要的轨道简并和库仑相互作用,以计算共振的X射线光谱响应,与我们建立的实验结果非常吻合。理论和实验之间以前不存在的,至关重要的联系,提供了对最近提出的键歧化理论的验证,并为镍酸盐和其他高价过渡金属化合物的工程化相的光谱研究提供了一种分析方法。

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