Predissociation and spectroscopy of the 3A2(000) state of 18O3 from CRDS spectra of the 3A2(000)←X1A1(110) hot band near 7900cm−1
Author:
Funder
ANR project ‘IDEO’
Publisher
Elsevier BV
Subject
Spectroscopy,Atomic and Molecular Physics, and Optics,Radiation
Reference40 articles.
1. A comparative rotational analysis of the 000 bands of the 3A2←X1A1 Wulf transition for the isotopomers 16O3 and 18O3 of ozone by high resolution Fourier transform spectrometry;Bouvier;Spectrochim. Acta,1999
2. Spectroscopy and predissociation of the 3A2 electronic state of ozone 16O3 and 18O3 by high resolution Fourier transform spectrometry;Bouvier;Spectrochim. Acta,2001
3. Lifetimes of the lowest triplet state of ozone by intracavity laser absorption spectroscopy;Abel;Chem. Phys. Lett.,1997
4. Linewidths and line intensity measurements in the weak 3A2(000)←X1A1(000) band of ozone by pulsed cavity ringdown spectropscopy;Wachsmuth;J. Geophys. Res.,2003
5. Contribution to the analysis of the predisssociated rovibronic structure of the symmetric isotopomers 16O3 and 18O3 of ozone near 10 400cm−1;Wannous;Spectrochim. Acta,2004
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