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首页> 外文期刊>The Journal of Chemical Physics >Exact ionization potentials from wavefunction asymptotics: The extended Koopmans’ theorem, revisited
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Exact ionization potentials from wavefunction asymptotics: The extended Koopmans’ theorem, revisited

机译:波函数渐近性产生的精确电离势:重新讨论了扩展的考夫曼定理

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摘要

A simple explanation is given for the exactness of the extended Koopmans’ theorem,(EKT) for computing the removal energy of any many-electron system to the lowest-energy ground state ion of a given symmetry. In particular, by removing the electron from a “removal orbital” of appropriate symmetry that is concentrated in the asymptotic region, one obtains the exact ionization potential and the exact Dyson orbital for the corresponding state of the ion. It is argued that the EKT is not restricted to many-electron systems but holds for any finite many-body system, provided that the interaction vanishes for increasing interparticle distance. A necessary and sufficient condition for the validity of the EKT for any state (not just the lowest-energy states of a given symmetry) in terms of the third-order reduced density matrix is stated and derived.
机译:对于扩展的库普曼定理(EKT)的精确性,给出了一个简单的解释,该定理用于计算任何多电子系统对给定对称性的最低能量基态离子的去除能。特别地,通过从集中在渐近区域中的具有适当对称性的“去除轨道”中去除电子,可以获得针对离子的相应状态的精确电离势和精确的戴森轨道。有人认为,EKT不仅限于多电子系统,而且对于任何有限的多体系统都适用,只要相互作用随着增加粒子间距离而消失即可。陈述并推导了针对三阶缩减密度矩阵的任何状态(不仅是给定对称性的最低能量状态),EKT有效性的必要和充分条件。

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