Gaussian Wavefunctions for the 10-Electron Systems. II. Hydrogen Fluoride
Malcolm C. Harrison
Abstract
Malcolm C. Harrison
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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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