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首页> 外文期刊>The Journal of Chemical Physics >Magic numbers, quantum delocalization, and orientational disordering in anionic hydrogen and deuterium clusters
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Magic numbers, quantum delocalization, and orientational disordering in anionic hydrogen and deuterium clusters

机译:阴离子氢气和氘簇中的魔术数,量子临床化和定向排放

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The Diffusion Monte Carlo (DMC) method was applied to anionic hydrogen clusters H-(H-2)(n) (n = 1-16, 32) and their deuterated analogs using a polarizable all-atom potential energy surface (PES) developed by Calvo and Yurtsever. For the hydrogen clusters, the binding energy Delta E-n appears to be a smooth function of the cluster size n, thus contradicting the previous claim that n = 12 is a "magic number" cluster. The structures of the low energy minima of the PES for these clusters belong to the icosahedral motif with the H-2 molecules aligned toward the central H- ion. However, their ground state wavefunctions are highly delocalized and resemble neither the structures of the global nor local minima. Moreover, the strong nuclear quantum effects result in a nearly complete orientational disordering of the H-2 molecules. For the deuterium dusters, the ground state wavefunctions are localized and the D-2 molecules are aligned toward the central D- ion. However, their structures are still characterized as disordered and, as such, do not display size sensitivity. In addition, DMC simulations were performed on the mixed H- (H-2)(n) (D-2)(p) clusters with (n, p) = (6, 6) and (16, 16). Again, in contradiction to the previous claim, we found that the "more quantum" H-2 molecules prefer to reside farther from the central H- ion than the D-2 molecules. Published under license by AIP Publishing.
机译:扩散蒙特卡罗(DMC)方法应用于阴离子氢簇H-(H-2)(n)(n = 1-16,32),并且使用可极化的全原子势能表面(PE)开发的它们的氘代类似物由Calvo和Yurtsever。对于氢簇,绑定能量Delta E-N似乎是簇尺寸N的平滑函数,因此与先前的权利要求相当n = 12是“魔号”集群。这些簇的PE的低能量最小值的结构属于甲基脲基脲与朝向中央H-离子对齐的H-2分子。然而,它们的地态波形是高度划分的并且既不像全局也是局部最小值的结构。此外,强的核量子效应导致H-2分子的几乎完全定位。对于氘粉尘器,地态波形是定位的,D-2分子朝向中心D离子对齐。然而,它们的结构仍表征为混乱,因此不显示尺寸灵敏度。此外,在混合的H-(H-2)(N)(D-2)(D-2)(P)簇上进行DMC模拟,其具有(n,p)=(6,6)和(16,16)。同样,为了对前述权利要求矛盾,我们发现“更多量子”H-2分子更喜欢与D-2分子相比远离中央H离子。通过AIP发布在许可证下发布。

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