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On the physical interpretation of the nuclear molecular orbital energy

机译:论核分子轨道能量的物理解释

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Recently, several groups have extended and implemented molecular orbital ( MO) schemes to simultaneously obtain wave functions for electrons and selected nuclei. Many of these schemes employ an extended Hartree-Fock approach as a first step to find approximate electron-nuclear wave functions and energies. Numerous studies conducted with these extended MO methodologies have explored various effects of quantum nuclei on physical and chemical properties. However, to the best of our knowledge no physical interpretation has been assigned to the nuclear molecular orbital energy (NMOE) resulting after solving extended Hartree-Fock equations. This study confirms that the NMOE is directly related to the molecular electrostatic potential at the position of the nucleus.
机译:最近,几个组延伸和实施了分子轨道(Mo)方案,以同时获得电子和所选核的波函数。 其中许多方案采用扩展的Hartree-Fock方法作为找到近似电子 - 核波功能和能量的第一步。 用这些延长的MO方法进行的许多研究已经探讨了量子核对物理和化学性质的各种影响。 然而,由于我们所知,在求解延伸的Hartree-Fock方程之后,没有将物理解释分配给核分子轨道能量(NMOE)。 该研究证实,NMOE与细胞核位置处的分子静电电位直接相关。

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