One‐ and two‐photon fluorescence excitation spectra of the 2 1Ag states of linear tetraenes in free jet expansions

1995 
One‐ and two‐photon fluorescence excitation spectra of the S1←S0 transitions of the all‐trans isomers of 1,3,5,7‐octatetraene, 1,3,5,7‐nonatetraene, and 2,4,6,8‐decatetraene have been obtained in free jet expansions. Comparison of the one‐ and two‐photon spectra allows the unambiguous identification of electronic and vibronic origins and, for octatetraene and decatetraene, provides clear evidence for molecular inversion symmetry. One‐photon spectra show ag progressions built on Herzberg–Teller, bu promoting modes, while two‐photon spectra are built on progressions of ag modes starting from the 2 1Ag←1 1Ag electronic origins. In nonatetraene, the absence of inversion symmetry results in an allowed electronic origin in both the one‐ and two‐photon spectra. Nevertheless, bands built on vibronic origins dominate the one‐photon spectrum. The S1←S0 spectra of nonatetraene and decatetraene exhibit characteristic splittings of vibronic bands that can be quantitatively explained by the tunneling of the methyl grou...
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