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    Ya-hua Hu, Chen Zhen, Jing-hua Dai, Xiao-guo Zhou, Shi-lin Liu. High-resolution Absorption Spectra of Acetylene in 142.8-152.3 nm[J]. Chinese Journal of Chemical Physics , 2008, 21(5): 415-420. DOI: 10.1088/1674-0068/21/05/415-420
    Citation: Ya-hua Hu, Chen Zhen, Jing-hua Dai, Xiao-guo Zhou, Shi-lin Liu. High-resolution Absorption Spectra of Acetylene in 142.8-152.3 nm[J]. Chinese Journal of Chemical Physics , 2008, 21(5): 415-420. DOI: 10.1088/1674-0068/21/05/415-420

    High-resolution Absorption Spectra of Acetylene in 142.8-152.3 nm

    • The absorption spectra of acetylene molecules was measured under jet-cooled conditions in the wavelength range of 142.8-152.3 nm,with a tunable and highly resolved vacuum ultraviolet (VUV) laser generated by two-photon resonant four wave difference frequency mixing processes. Due to the sufficient vibrational and rotational cooling effect of the molecular beam and the higher resolution VUV laser, the observed absorption spectra exhibit more distinct spectral features than the previous works measured at room temperature. The major three vibrational bands are assigned as a CC symmetry stretching vibrational progress (v2=0-2) of the C1Ⅱu state of acetylene.The observed shoulder peak at 148.2 nm is assigned to the first overtone band of the trans-bending mode v4 of the C1Ⅱu state of acetylene. Additionally,the two components, 420 (μ1Ⅱu) and 420(к1Ⅱu),are suggested to exhibit in the present absorption spectra,due to their Renner-Teller effect and transition selection rule.All band origins and bandwidths are obtained subsequently,and it is foundthat bandwidths are broadened and lifetimes decrease gradually with the excitation of vibration.
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