Published June 21, 2009 | Published
Journal Article Open

On the vibronic level structure in the NO_3 radical. Part III. Observation of intensity borrowing via ground state mixing

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Abstract

The A^2E" ← X^2A'_2 absorption spectrum exhibits vibronically allowed transitions from the ground state of NO_3 to upper state levels having a"_1 and e' vibronic symmetries. This paper explores the coupling mechanisms that lend intensities to these features. While transitions to e' vibronic levels borrow intensity from the very strong B^2E' ← X^2A'_2 electronic transition, those to a"_1 levels involve only negligible upper-state borrowing effects. Rather, it is the vibronic mixing of the ground vibronic level of NO_3 with vibrational levels in the B^2E' electronic state that permit the a"_1 levels to be seen in the spectrum. These ideas are supported by vibronic coupling calculations. The fact that the intensities of features corresponding to the two different vibronic symmetries are comparable is thus accidental.

Additional Information

© 2009 Royal Society of Chemistry. Received 2nd February 2009, accepted 27th April 2009. First published as an Advance Article on the web 18th May 2009. This paper is published as part of a PCCP Themed Issue on: Electronic Structures and Reaction Dynamics of Open-shell Species This work was supported by the Robert A. Welch Foundation, the National Science Foundation, the US Department of Energy and the Upper Atmospheric Research Program of the National Aeronautics and Space Administration. We also acknowledge Andrei Deev (JPL) for his experimental work on NO_3 and many discussions, as well as Kana Takamatsu and Nathan Eddingsaas (Caltech) for comments on an earlier version of this manuscript.

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