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Ground state spectrum of methylcyanide
Authors:Marie &Scaron  ime?ková  ,Ulrike Fuchs,Gisbert Winnewisser,Koichi M.T. Yamada
Affiliation:a J. Heyrovský Institute, Academy of Sciences, 182 23 Prague 8, Czech Republic
b Institute of Chemical Technology, Department of Analytical Chemistry, Technická 5, 166 28 Prague 6, Czech Republic
c I. Physikalisches Institut, Universität zu Köln, D-50937 Cologne, Germany
d Institute for Environmental Management Technology, AIST Tsukuba-West, Onogawa 16-1, Tsukuba 305-8569, Japan
Abstract:The rotational spectrum of methylcyanide (acetonitrile) in the ground vibrational state was measured in the spectral region from 91 to 810 GHz using the Cologne and Tsukuba spectrometers operated in the Doppler-limited and sub-Doppler saturation layouts. The resolution of the saturation Lamb-dip measurements is estimated to be about 1 kHz at the best of circumstances and the measuring accuracy of 10-60 kHz depending very sensitively on the quality of the spectrum. In the cases of rotational transitions with the low quantum number J (J<18) and with a low difference of the rotational quantum numbers JK, the resolved or partly resolved hyperfine structures of the rotational transitions were observed. Together with the most accurate data from the literature, the newly measured experimental data were analyzed using the traditional polynomial energy formula as well as the Padè approximant for the effective rotational Hamiltonian. The resulting rotational, centrifugal distortion, and hyperfine structure spectroscopic constants were obtained with a significantly higher accuracy than the ones listed in the literature. In addition, an anomalous accidental resonance was detected between the K=14 ground state levels and the K=12, +l levels in the excited v8=1 vibrational state.
Keywords:Methylcyanide   Acetonitrile   Rotational spectra   Saturation Lamb-dip measurements   Sub-Doppler saturation rotational spectroscopy   Rotational centrifugal distortion   Hyperfine structure spectroscopic constants
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