Comparison of Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals: electron momentum spectroscopy of CH sub(4)

The Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals of methane (CH4) were compared with the experimental electron momentum distributions. The Dyson, Hartree-Fock, Kohn-Sham theories can present a direct concise interpretation and well reproduce the experimental results, but the na...

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Published inJournal of physics. Conference series Vol. 488; p. 1
Main Authors Ning, Chuangang, Miao, Yurun, Deng, Jingkang, Zhu, Jingsheng
Format Journal Article
LanguageEnglish
Published 01.01.2014
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Abstract The Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals of methane (CH4) were compared with the experimental electron momentum distributions. The Dyson, Hartree-Fock, Kohn-Sham theories can present a direct concise interpretation and well reproduce the experimental results, but the natural-bond orbital cannot.
AbstractList The Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals of methane (CH4) were compared with the experimental electron momentum distributions. The Dyson, Hartree-Fock, Kohn-Sham theories can present a direct concise interpretation and well reproduce the experimental results, but the natural-bond orbital cannot.
Author Miao, Yurun
Deng, Jingkang
Zhu, Jingsheng
Ning, Chuangang
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Snippet The Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals of methane (CH4) were compared with the experimental electron momentum distributions....
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SubjectTerms Methane
Orbitals
Spectroscopy
Title Comparison of Dyson, Hartree-Fock, Kohn-Sham, natural, and natural-bond orbitals: electron momentum spectroscopy of CH sub(4)
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