Combination of the Perturbation Theory with Configuration Interaction Method

Fuente: arXiv
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Main Authors: Kozlov, M. G., Tupitsyn, I. I., Bondarev, A. I., Mironova, D. V.
Format: Preprint
Published: 2022
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author Kozlov, M. G.
Tupitsyn, I. I.
Bondarev, A. I.
Mironova, D. V.
author_facet Kozlov, M. G.
Tupitsyn, I. I.
Bondarev, A. I.
Mironova, D. V.
contents Present atomic theory provides accurate and reliable results for atoms with a small number of valence electrons. However, most current methods of calculations fail when the number of valence electrons exceeds four or five. This means that we can not make reliable predictions for more than a half of the periodic table. Here we suggest a modification of the CI+MBPT (configuration interaction plus many-body perturbation theory) method, which may be applicable to atoms and ions with filling d and f shells.
format Preprint
id arxiv_https___arxiv_org_abs_2202_02026
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Combination of the Perturbation Theory with Configuration Interaction Method
Kozlov, M. G.
Tupitsyn, I. I.
Bondarev, A. I.
Mironova, D. V.
Atomic Physics
Chemical Physics
Present atomic theory provides accurate and reliable results for atoms with a small number of valence electrons. However, most current methods of calculations fail when the number of valence electrons exceeds four or five. This means that we can not make reliable predictions for more than a half of the periodic table. Here we suggest a modification of the CI+MBPT (configuration interaction plus many-body perturbation theory) method, which may be applicable to atoms and ions with filling d and f shells.
title Combination of the Perturbation Theory with Configuration Interaction Method
topic Atomic Physics
Chemical Physics
url https://arxiv.org/abs/2202.02026