Use of Cartesian coordinates in evaluation of multicenter multielectron integrals over Slater type orbitals and their derivatives
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Publication:937593
DOI10.1007/s10910-006-9205-7zbMath1262.81269OpenAlexW2043019858MaRDI QIDQ937593
Publication date: 15 August 2008
Published in: Journal of Mathematical Chemistry (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10910-006-9205-7
Slater type orbitalsaddition theoremsmulticenter multielectron integralsregular solid spherical harmonics
Related Items (3)
Expansion formulae for two-center charge densities of integer and noninteger \(n\) generalized exponential type orbitals applied to evaluation of multicenter multielectron integrals ⋮ Expansion formulae for two-center charge densities of integer and noninteger \(n\) generalized exponential type orbitals with hyperbolic cosine and their use in evaluation of multicenter multielectron integrals ⋮ On the mathematical nature of Guseinov's rearranged one-range addition theorems for Slater-type functions
Cites Work
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- Evaluation of multicenter electronic attraction, electric field and electric field gradient integrals with screened and nonscreened Coulomb potentials over integer and noninteger \(n\) Slater orbitals
- Calculation of multicenter electronic attraction, electric field and electric field gradient integrals of Coulomb potential over integer and noninteger \(n\) Slater orbitals
- Natural Orbitals in the Quantum Theory of Two-Electron Systems
- On the eigenfunctions of many-particle systems in quantum mechanics
- Weakly convergent expansions of a plane wave and their use in Fourier integrals
- Action of acoustic waves on a spherical shell filled by a viscous, compressible fluid
- A matrix representation of the translation operator with respect to a basis set of exponentially declining functions
- A Quantum Mechanics Treatment of the Water Molecule
- Unified analytical treatment of multicentre electron attraction, electric field and electric field gradient integrals over Slater orbitals
- Addition theorem of Slater type orbitals: a numerical evaluation of Barnett–Coulson/Löwdin functions
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