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A QUANTUM MONTE CARLO PERTURBATIONAL STUDY OF THE HE-HE INTERACTION

机译:He-He相互作用的量子蒙特卡罗微扰研究

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Using a recently proposed quantum Monte Carlo method the exact first-, second-, and third-order Rayleigh-Schrodinger interaction energies of the He-He interaction have been calculated for internuclear distances in the range 1.5- to 7.0 bohr. Putting together these new data with the best ab initio results available, the relative importance of the different contributions appearing in the perturbational expansion of the He-He interaction energy is discussed. In particular, the results show that the third-order Rayleigh-Schrodinger term and the intra-atomic correlation contribution to the second-order component play a significant role. For intermediate and large distances (including the equilibrium distance), it is found that the perturbational expansion limited to the complete first- and second-order, plus the third-order Rayleigh-Schrodinger energy agrees with the best known values of the total interaction energy of the helium dimer. (C) 1996 American Institute of Physics. [References: 40]
机译:使用最近提出的量子蒙特卡罗方法,已经计算了He-He相互作用的精确的一阶,二阶和三阶Rayleigh-Schrodinger相互作用能,适用于1.5至7.0 bohr范围内的核间距。将这些新数据与可用的最佳从头计算结果放在一起,讨论了He-He相互作用能微扰扩展中出现的不同贡献的相对重要性。尤其是,结果表明,三阶Rayleigh-Schrodinger项以及原子内相关性对二阶成分的贡献起着重要作用。对于中等距离和大距离(包括平衡距离),发现微扰展开仅限于完整的一阶和二阶,再加上三阶瑞利-薛定inger能与总相互作用能的最著名值一致氦二聚体。 (C)1996年美国物理研究所。 [参考:40]

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