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Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation

The potential energy curves (PECs) of the X(2)Π and A(2)Π electronic states of the SO(+) ion are calculated using the complete active space self-consistent field method, which is followed by the internally contracted multireference configuration interaction (MRCI) approach for internuclear separatio...

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Autores principales: Xing, Wei, Shi, Deheng, Sun, Jinfeng, Zhu, Zunlue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3430229/
https://www.ncbi.nlm.nih.gov/pubmed/22942698
http://dx.doi.org/10.3390/ijms13078189
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author Xing, Wei
Shi, Deheng
Sun, Jinfeng
Zhu, Zunlue
author_facet Xing, Wei
Shi, Deheng
Sun, Jinfeng
Zhu, Zunlue
author_sort Xing, Wei
collection PubMed
description The potential energy curves (PECs) of the X(2)Π and A(2)Π electronic states of the SO(+) ion are calculated using the complete active space self-consistent field method, which is followed by the internally contracted multireference configuration interaction (MRCI) approach for internuclear separations from 0.08 to 1.06 nm. The spin-orbit coupling effect on the spectroscopic parameters is included using the Breit-Pauli operator. To improve the quality of PECs and spin-orbit coupling constant (A(0)), core-valence correlation and scalar relativistic corrections are included. To obtain more reliable results, the PECs obtained by the MRCI calculations are corrected for size-extensivity errors by means of the Davidson modification (MRCI+Q). At the MRCI+Q/aug-cc-pV5Z+CV+DK level, the A(0) values of the SO(+)(X(2)Π(1/2, 3/2)) and SO(+)(A(2)Π(1/2, 3/2)) are 362.13 and 58.16 cm(−1) when the aug-cc-pCVTZ basis set is used to calculate the spin-orbit coupling splitting, and the A(0) of the SO(+)(X(2)Π(1/2, 3/2)) and SO(+)(A(2)Π(1/2, 3/2)) are 344.36 and 52.90 cm(−1) when the aug-cc-pVTZ basis set is used to calculate the spin-orbit coupling splitting. The conclusion is drawn that the core-valence correlations correction makes the A(0) slightly larger. The spectroscopic results are obtained and compared with those reported in the literature. Excellent agreement exists between the present results and the measurements. The vibrational manifolds are calculated, and those of the first 30 vibrational states are reported for the J = 0 case. Comparison with the measurements shows that the present vibrational manifolds are both reliable and accurate.
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spelling pubmed-34302292012-08-31 Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation Xing, Wei Shi, Deheng Sun, Jinfeng Zhu, Zunlue Int J Mol Sci Article The potential energy curves (PECs) of the X(2)Π and A(2)Π electronic states of the SO(+) ion are calculated using the complete active space self-consistent field method, which is followed by the internally contracted multireference configuration interaction (MRCI) approach for internuclear separations from 0.08 to 1.06 nm. The spin-orbit coupling effect on the spectroscopic parameters is included using the Breit-Pauli operator. To improve the quality of PECs and spin-orbit coupling constant (A(0)), core-valence correlation and scalar relativistic corrections are included. To obtain more reliable results, the PECs obtained by the MRCI calculations are corrected for size-extensivity errors by means of the Davidson modification (MRCI+Q). At the MRCI+Q/aug-cc-pV5Z+CV+DK level, the A(0) values of the SO(+)(X(2)Π(1/2, 3/2)) and SO(+)(A(2)Π(1/2, 3/2)) are 362.13 and 58.16 cm(−1) when the aug-cc-pCVTZ basis set is used to calculate the spin-orbit coupling splitting, and the A(0) of the SO(+)(X(2)Π(1/2, 3/2)) and SO(+)(A(2)Π(1/2, 3/2)) are 344.36 and 52.90 cm(−1) when the aug-cc-pVTZ basis set is used to calculate the spin-orbit coupling splitting. The conclusion is drawn that the core-valence correlations correction makes the A(0) slightly larger. The spectroscopic results are obtained and compared with those reported in the literature. Excellent agreement exists between the present results and the measurements. The vibrational manifolds are calculated, and those of the first 30 vibrational states are reported for the J = 0 case. Comparison with the measurements shows that the present vibrational manifolds are both reliable and accurate. Molecular Diversity Preservation International (MDPI) 2012-07-03 /pmc/articles/PMC3430229/ /pubmed/22942698 http://dx.doi.org/10.3390/ijms13078189 Text en © 2012 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Xing, Wei
Shi, Deheng
Sun, Jinfeng
Zhu, Zunlue
Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title_full Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title_fullStr Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title_full_unstemmed Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title_short Investigation of Spectroscopic Properties and Spin-Orbit Splitting in the X(2)Π and A(2)Π Electronic States of the SO(+) Cation
title_sort investigation of spectroscopic properties and spin-orbit splitting in the x(2)π and a(2)π electronic states of the so(+) cation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3430229/
https://www.ncbi.nlm.nih.gov/pubmed/22942698
http://dx.doi.org/10.3390/ijms13078189
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