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首页> 外文期刊>International Journal of Quantum Chemistry >Density functional embedding approach to the Mn impurities in NaBr crystals
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Density functional embedding approach to the Mn impurities in NaBr crystals

机译:NaBr晶体中Mn杂质的密度泛函嵌入方法

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摘要

We have performed density functional calculations for three 19-atom clusters, two 25-atom clusters, and one 18-atom cluster, each embedded in a Madelung potential that takes into account the long-range electrostatic interactions of the ion lattice of a NaBr crystal. One of the three 19-atom and one of the two 25-atom clusters model bulk crystalline NaBr; the others model a Mn2+ impurity trapped in a cubically symmetric crystalline electric field (CEF) site of the NaBr host. One of the latter has the NaBr bulk interatomic distance, while in the others relaxation of the Br atoms around the metallic impurity has been considered. The 18-atom cluster models a relaxed Mn impurity Na vacancy system. All of our calculated clusters have a Na site at the center, and they all include at least first and second nearest-neighbor host atoms. In the center of the doped clusters the Mn impurity replaces the missing Na ion. The electronic structure of the embedded impurity ion in its local environment was computed self-consistently by means of ah-electron density functional theory (DFT) techniques. We have examined the lattice relaxation around the impurity and calculated the hyperfine coupling constants (HFCC). The results for the Mn electronic structure and for the HFCC are in agreement with experimental results using electron paramagnetic resonance measurements. (C) 2000 John Wiley & Sons, Inc. [References: 52]
机译:我们已经对三个19原子团簇,两个25原子团簇和一个18原子团簇进行了密度泛函计算,每个团簇都嵌入了Madelung势,其中考虑了NaBr晶体离子晶格的长距离静电相互作用。 。三个19原子团簇之一和两个25原子团簇之一模拟本体结晶NaBr。其他模型模拟了被困在NaBr主体的立方对称晶体电场(CEF)位置中的Mn2 +杂质。后者之一具有NaBr本体原子间距离,而在另一些中,已考虑到围绕金属杂质的Br原子弛豫。 18原子团簇模拟了一个宽松的Mn杂质Na空位系统。我们所有的计算簇都在中心有一个Na位点,并且它们都至少包括第一和第二最邻近的宿主原子。在掺杂簇的中心,Mn杂质代替了缺失的Na离子。借助ah-电子密度泛函理论(DFT)技术自洽地计算了嵌入杂质离子在其局部环境中的电子结构。我们已经检查了杂质周围的晶格弛豫,并计算了超精细耦合常数(HFCC)。 Mn电子结构和HFCC的结果与使用电子顺磁共振测量的实验结果一致。 (C)2000 John Wiley&Sons,Inc. [参考:52]

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