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Wave functions and two-electron probability distributions of the Hooke's-law atom and helium - art. no. 022505

机译:胡克定律原子和氦的波函数和二电子概率分布-艺术没有。 022505

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The Hooke's-law atom (hookium) provides an exactly soluble model for a two-electron atom in which the nuclear-electron Coulombic attraction has been replaced by a harmonic one. Starting from the known exact position-space wave function for the ground state of hookium, we present the momentum-space wave function. We also look at the intracules, two-electron probability distributions, for hookium in position, momentum, and phase space. These are compared with the Hartree-Fock results and the Coulomb holes (the difference between the exact and Hartree-Fock intracules) in position, momentum, and phase space are examined. We then compare these results with analogous results for the ground state of helium using a simple, explicitly correlated wave function. [References: 36]
机译:胡克定律原子(ook)为二电子原子提供了一个完全可溶的模型,在该模型中,核电子库仑引力已被谐波取代。从已知的hook基态的精确位置-空间波函数出发,我们介绍了动量-空间波函数。我们还查看了位置,动量和相空间中的钾离子的粒子内双电子概率分布。将这些结果与Hartree-Fock结果进行比较,并检查位置,动量和相空间中的库仑孔(精确库位和Hartree-Fock内质点之差)。然后,我们使用简单的显式相关的波函数将这些结果与氦基态的类似结果进行比较。 [参考:36]

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