Affiliation:
1. Department of Chemistry, University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, Scotland
Abstract
Two-photon spectra of the S1(Ã)–S0(X˜) transition of jet-cooled ortho-, meta- and
para-xylene have been recorded in the region 43,000–37,000 cm−1 using resonance
enhanced multiphoton ionization excitation. A full vibronic analysis for all three isomers
has been carried out enabling the identification of several excited state vibrational
frequencies for the first time. In particular, for ortho and para substitutions, a new,
strong two-photon vibronic coupling mode ν19b has been identified, and the significance
of this result is discussed. Some anomalies in the assignment of previously published
spectra of the xylenes, and related disubstituted benzenes, have been observed and
reassignments are suggested. In addition we show that the comparison of one and
two-photon spectra provides a method for determining the mechanism by which totally
symmetric fundamentals gain their intensity in one-photon spectra, namely either from
Herzberg–Teller intensity stealing or due to favourable Franck–Condon overlap.
Subject
Spectroscopy,Biochemistry,Atomic and Molecular Physics, and Optics
Cited by
23 articles.
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