1964The Journal of Chemical PhysicsRequires access

Gaussian Wavefunctions for the 10-Electron Systems. II. Hydrogen Fluoride

Malcolm C. Harrison

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Abstract

SCF calculations on hydrogen fluoride are presented for four different bases of Gaussian functions. The results suggest that a Gaussian 58+3p basis may prove superior to a minimal STO basis in many respects, though giving a slightly worse total energy. For more accurate calculations, a Gaussian basis rather less than twice as large as the STO basis should give comparable results. Computationally, this implies that for larger diatomic and all polyatomic calculations, a Gaussian basis is to be preferred for many applications.

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What this paper is about

SCF calculations on hydrogen fluoride are presented for four different bases of Gaussian functions. The results suggest that a Gaussian 58+3p basis may prove superior to a minimal STO basis in many respects, though giving a slightly worse total energy. For more accurate calculations, a Gaussian basis rather less than twice as large as the STO basis should give comparable results. Computationally, this implies that for larger diatomic and all polyatomic calculations, a Gaussian basis is to be preferred for many applications.

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Available abstract

SCF calculations on hydrogen fluoride are presented for four different bases of Gaussian functions. The results suggest that a Gaussian 58+3p basis may prove superior to a minimal STO basis in many respects, though giving a slightly worse total energy. For more accurate calculations, a Gaussian basis rather less than twice as large as the STO basis should give comparable results. Computationally, this implies that for larger diatomic and all polyatomic calculations, a Gaussian basis is to be preferred for many applications.

Key concepts: Diatomic molecule, Gaussian, Basis (linear algebra), Wave function, Hydrogen fluoride, Polyatomic ion, Basis function, STO-nG basis sets

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