Title of article
Efficient algorithm for two-center Coulomb and exchange integrals of electronic prolate spheroidal orbitals
Author/Authors
Mendl، نويسنده , , Christian B.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
19
From page
5157
To page
5175
Abstract
We present a fast algorithm to calculate Coulomb/exchange integrals of prolate spheroidal electronic orbitals, which are the exact solutions of the single-electron, two-center Schrödinger equation for diatomic molecules. Our approach employs Neumann’s expansion of the Coulomb repulsion 1/∣x − y∣, solves the resulting integrals symbolically in closed form and subsequently performs a numeric Taylor expansion for efficiency. Thanks to the general form of the integrals, the obtained coefficients are independent of the particular wavefunctions and can thus be reused later.
atures of our algorithm include complete avoidance of numeric integration, drafting of the individual steps as fast matrix operations and high accuracy due to the exponential convergence of the expansions.
ation to the diatomic molecules O2 and CO exemplifies the developed methods, which can be relevant for a quantitative understanding of chemical bonds in general.
Keywords
Prolate spheroidal coordinates , Diatomic molecules , Molecular orbitals , Schrِdinger equation , Laguerre expansions , Coulomb integrals
Journal title
Journal of Computational Physics
Serial Year
2012
Journal title
Journal of Computational Physics
Record number
1484442
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