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Electronic and Magnetic Properties of Small Rhodium Clusters

机译:小铑簇的电子和磁性

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We report a theoretical study of the electronic and magnetic properties of rhodium-atomic clusters. The lowest energy structures at the semi-empirical level of rhodium clusters are first obtained from a novel global-minimum search algorithm, known as PTMBHGA, where Gupta potential is used to describe the atomic interaction among the rhodium atoms. The structures are then re-optimized at the density functional theory (DFT) level with exchange-correlation energy approximated by Perdew-Burke-Ernzerhof generalized gradient approximation. For the purpose of calculating the magnetic moment of a given cluster, we calculate the optimized structure as a function of the spin multiplicity within the DFT framework. The resultant magnetic moments with the lowest energies so obtained allow us to work out the magnetic moment as a function of cluster size. Rhodium atomic clusters are found to display a unique variation in the magnetic moment as the cluster size varies. However,Rh_4 and Rh_6 are found to be nonmagnetic. Electronic structures of the magnetic ground-state structures are also investigated within the DFT framework. The results are compared against those based on different theoretical approaches available in the literature.
机译:我们举报了铑原子簇的电子和磁性特性的理论研究。首先从新的全局最小搜索算法获得半经验水平的最低能量结构,该核心是称为PTMBHGA的,其中GUPTA电位用于描述铑原子之间的原子相互作用。然后,在密度泛函理论(DFT)水平下,该结构在密度函数理论(DFT)水平上,通过Perdew-Burke-Ernzerhof广义梯度近似近似的交换相关能量。为了计算给定群集的磁矩,我们计算了DFT框架内自旋多样性的函数的优化结构。所得到的最低能量的所得磁矩允许我们根据簇大小的函数来计算磁矩。发现铑原子簇在簇大小变化时显示磁矩的独特变化。然而,发现RH_4和RH_6是非磁性的。还在DFT框架内研究了磁场结构的电子结构。将结果与基于文献中可用的不同理论方法进行比较。

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