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首页> 外文期刊>journal of chemical physics >Tridiagonal Fermi resonance structure in the vibrational spectrum of the CH chromophore in CHF3. II. Visible spectra
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Tridiagonal Fermi resonance structure in the vibrational spectrum of the CH chromophore in CHF3. II. Visible spectra

机译:Tridiagonal Fermi resonance structure in the vibrational spectrum of the CH chromophore in CHF3. II. Visible spectra

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The near IR and visible vibrational absorption spectra of CHF3were recorded up to wave numbers of 17thinsp;500 cmminus;1providing complete frequency coverage, together with paper I, from the low frequency fundamentals to theN=6 thinsp;CH stretchingndash;bending overtone multiplet. All strong bands in the high overtone spectra could be predicted and assigned by means of the tridiagonal Fermi resonance Hamiltonian, including a few combinations with intense CF3stretching vibrations already observed for the low overtones. Improved vibrational Fermi resonance constants are presented on the basis of a fit to 35 assigned bands. An analysis of the rotational fine structure of the 2ngr;4(E) overtone component and several Fermi resonance component bands result in values for agr;band agr;s, which allow us to determineBe. In the high overtone bands no rotational fine structure is observed. The bands can be understood by introducing additional homogeneous rovibrational structures of phenomenological widths Ggr;ape;1 to 10 cmminus;1. The results are discussed in relation to the separation of time scales for mode selective vibrational redistribution and further evolution. The overtone band strengths are reported and analyzed approximately with the empirical local Mecke dipole function.

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