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Quantum Monte Carlo simulations of Ar-n-CO2 clusters

机译:Ar-n-CO2团簇的量子蒙特卡洛模拟

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Potential-energy functions for CO2-Ar-n clusters are constructed using the pairwise-additive approximation from the Ar-Ar potential of Aziz [J. Chem. Phys. 99, 4518 (1993)] and three different CO2-Ar potentials which have been reported recently. These are used to find minimum-energy structures and to carry out rigid-body diffusion Monte Carlo simulations of the ground vibrational state for CO2-Ar-n clusters with n up to 30, as well as the first excited state for n = 1. From these results, the CO2 nu(3) redshift is estimated. For all values of n, the Ar atoms tend to surround the CO2 molecule. A complete first solvation shell is first found for n = 14, and the largest complete first salvation shell is found for n = 17. Although the most recent semiempirical CO2-Ar potential function of Hutson et al. [J. Chem. Phys. 105, 9130 (1996)] gives more accurate predictions of spectroscopic properties for n = 1 than the best available ab initio potential function [Marshall et al., J. Chem. Phys. 104, 6569 (1996)], both potential functions give quite similar predictions for structures and approximate CO2 nu(3) redshifts for larger values of n. (C) 1998 American Institute of Physics. [References: 31]
机译:CO2-Ar-n团簇的势能函数是根据阿齐兹的Ar-Ar势成对加法近似构造的[J.化学物理99,4518(1993)]和最近报道的三种不同的CO2-Ar势。这些用于寻找最小能量结构并对n高达30的CO2-Ar-n团簇以及n = 1的第一激发态进行基体振动状态的刚体扩散蒙特卡罗模拟。根据这些结果,可以估算出CO2 nu(3)的红移。对于所有n值,Ar原子都倾向于包围CO2分子。对于n = 14,首先找到一个完整的第一溶剂化壳,对于n = 17,则找到最大的完整的第一溶剂化壳。尽管Hutson等人最近的半经验性CO2-Ar势能。 [J.化学物理105,9130(1996)]给出了n = 1的光谱特性的准确预测,比起最佳的从头算势函数[Marshall et al。,J. Chem。物理104,6569(1996)],两个潜在函数都给出了非常相似的结构预测,并且对于较大的n值,估计了CO2 nu(3)红移。 (C)1998美国物理研究所。 [参考:31]

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