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A numerical study of spin-dependent organization of alkali-metal atomic clusters using density-functional method

机译:密度泛函方法对碱金属原子团簇自旋依赖性组织的数值研究

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We calculate the different geometric isomers of spin clusters composed of a small number of alkali-metal atoms using the UB3LYP density-functional method. The electron density distribution of clusters changes according to the value of total spin. Steric structures as well as planar structures arise when the number of atoms increases. The lowest spin state is the most stable and Li n , Na n , K n , Rb n , and Cs n with n = 2–8 can be formed in higher spin states. In the highest spin state, the preparation of clusters depends on the kind and the number of constituent atoms. The interaction energy between alkali-metal atoms and rare-gas atoms is smaller than the binding energy of spin clusters. Consequently, it is possible to self-organize the alkali-metal-atom clusters on a non-wetting substrate coated with rare-gas atoms.
机译:我们使用UB3LYP密度泛函方法计算了由少量碱金属原子组成的自旋簇的不同几何异构体。团簇的电子密度分布根据总自旋的值而变化。当原子数增加时,会形成立体结构和平面结构。最低的自旋态是最稳定的,并且Li n ,Na n ,K n ,Rb n 和n = 2–8的Cs n 可以在更高的自旋状态下形成。在最高自旋态下,簇的制备取决于组成原子的种类和数量。碱金属原子与稀有气体原子之间的相互作用能小于自旋簇的结合能。因此,有可能在涂覆有稀有气体原子的非润湿衬底上自组织碱金属原子团簇。

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