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The adiabatic-to-diabatic transformation angle and the berry phase for coupled jahn-teller/renner-teller systems: The F + H2 as a case study.

Authors :
Das, Anita
Mukhopadhyay, Debasis
Adhikari, Satrajit
Baer, Michael
Source :
International Journal of Quantum Chemistry; Jul2012, Vol. 112 Issue 13, p2561-2570, 10p, 1 Diagram, 1 Chart, 4 Graphs
Publication Year :
2012

Abstract

The approach to calculate improved, two-state, adiabatic-to-diabatic transformation angles (also known as mixing angles), presented before (see Das et al., J Chem Phys 2010, 133, 084107), was used here while studying the F + H<subscript>2</subscript> system. However, this study is characterized by two new features: (a) it is the first of its kind in which is studied the interplay between Renner-Teller (RT) and Jahn-Teller (JT) nonadiabatic coupling terms (NACT); (b) it is the first of its kind in which is reported the effect of an upper singular RT-NACT on a lower two-state (JT) mixing angle. The fact that the upper NACT is singular (it is shown to be a quasi-Dirac δ-function) enables a semi-analytical solution for this perturbed mixing angle. The present treatment, performed for the F + H<subscript>2</subscript> system, revealed the existence of a novel parameter, η, the Jahn-Renner coupling parameter (JRCP), which yields, in an unambiguous way, the right intensity of the RT coupling (as resembled, in this case, by the quasi-Dirac δ-function) responsible for the fact that the final end-of-the contour angle (identified with the Berry phase) is properly quantized. This study implies that the numerical value of this parameter is a pure number (independent of the molecular system): η = $ 2\sqrt 2 /\pi $ (= 0.9003) and that there is a good possibility that this value is a novel characteristic molecular constant for a certain class of tri-atomic systems. © 2011 Wiley Periodicals, Inc. Int J Quantum Chem, 2011 [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00207608
Volume :
112
Issue :
13
Database :
Complementary Index
Journal :
International Journal of Quantum Chemistry
Publication Type :
Academic Journal
Accession number :
75505833
Full Text :
https://doi.org/10.1002/qua.23272