New Analysis Of The Nu(6) And 2 Nu(3) Bands Of Methyl Iodide (Ch3i)

JOURNAL OF MOLECULAR SPECTROSCOPY(2016)

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Abstract
A new rovibrational study of the nu(6) band of methyl iodide was conducted to obtain a rather complete line list. A new analysis of line positions was accomplished. The spectrum of this band has been first recorded using the Bruker IFS125HR Fourier transform spectrometer (FTS) at the AILES beamline of the SOLEIL Synchrotron facility and later with the Bruker IFS125HR FTS located at the LISA facility in Creteil. Altogether, about 10,000 lines were assigned for the nu 6 and 2 nu(3) bands up to high quantum numbers (J <= 85 and K <= 20). Because of the large value of the I-127 nuclear quadrupole hyperfine constant, a significant portion of these assignments concerns clusters of hyperfine subcomponents, which are easily observable at 11 mu m. These infrared data were combined in a least squares fit together with the existing microwave data on rotational transitions within the v(6) = 1 and v(3) = 2 vibrational states to get the upper state rotational constants and interacting parameters for the v(6) =1 and v(3) = 2 states. Due to the high values of quantum numbers achieved during this infrared analysis, the final energy level calculation accounts for aC(x) (Delta l = +/- 1; Delta K = +/- 1) and an alpha (Delta l = -/+ 1; Delta K = +/- 2) types of Coriolis interactions coupling the v(6) = 1 energy levels with those from the v(3) = 2 and v(2) = 1 states, respectively. On the other hand, it proved unnecessary to update the existing hyperfine parameters for the v(6) =1 and v(3) = 2 states. (C) 2016 Elsevier Inc. All rights reserved.
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Key words
Methyl iodide,CH3I,High-resolution Fourier transform spectroscopy,Rovibrational analysis,Coriolis resonances,Line positions and hyperfine structure
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