Main Group Atoms and Dimers Studied with a New Relativistic ANO Basis Set
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Abstract
New basis sets of the atomic natural orbital (ANO) type have been developed for the main group and rare gas atoms. The ANO's have been obtained from the average density matrix of the ground and lowest excited states of the atom, the positive and negative ions, and the dimer at its equilibrium geometry. Scalar relativistic effects are included through the use of a Douglas−Kroll Hamiltonian. Multiconfigurational wave functions have been used with dynamic correlation included using second-order perturbation theory (CASSCF/CASPT2). The basis sets are applied in calculations of ionization energies, electron affinities, and excitation energies for all atoms and the ground-state potentials for the dimers. These…
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Topics
Keywords
- Chemistry
- Group (periodic table)
- Basis set
- Basis (linear algebra)
- Relativistic quantum chemistry
- Set (abstract data type)
- Atomic physics
- Computational chemistry
UN Sustainable Development Goals
- Affordable and clean energy
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