Basis set calculations of heavy atoms

Fuente: arXiv
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Main Authors: Kozlov, M. G., Demidov, Yu. A., Kaygorodov, M. Y., Triapitsyna, E. V.
Format: Preprint
Published: 2023
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author Kozlov, M. G.
Demidov, Yu. A.
Kaygorodov, M. Y.
Triapitsyna, E. V.
author_facet Kozlov, M. G.
Demidov, Yu. A.
Kaygorodov, M. Y.
Triapitsyna, E. V.
contents Most modern calculations of many-electron atoms use basis sets of atomic orbitals. An accurate account for the electronic correlations in heavy atoms is very difficult computational problem and optimization of the basis sets can reduce computational costs and increase final accuracy. Here we suggest a simple differential ansatz to form virtual orbitals from the Dirac-Fock orbitals of the core and valence electrons. We use basis sets with such orbitals to calculate different properties in Cs including hyperfine structure constants and QED corrections to the valence energies and to the E1 transition amplitudes.
format Preprint
id arxiv_https___arxiv_org_abs_2312_07782
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Basis set calculations of heavy atoms
Kozlov, M. G.
Demidov, Yu. A.
Kaygorodov, M. Y.
Triapitsyna, E. V.
Atomic Physics
Most modern calculations of many-electron atoms use basis sets of atomic orbitals. An accurate account for the electronic correlations in heavy atoms is very difficult computational problem and optimization of the basis sets can reduce computational costs and increase final accuracy. Here we suggest a simple differential ansatz to form virtual orbitals from the Dirac-Fock orbitals of the core and valence electrons. We use basis sets with such orbitals to calculate different properties in Cs including hyperfine structure constants and QED corrections to the valence energies and to the E1 transition amplitudes.
title Basis set calculations of heavy atoms
topic Atomic Physics
url https://arxiv.org/abs/2312.07782