Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5426944 | Journal of Quantitative Spectroscopy and Radiative Transfer | 2017 | 6 Pages |
â¢Absorption spectrum of HDO between 11,200 and 12,400â¯cmâ1.â¢Line positions, intensities and energy levels of HDO are measured.â¢Results are compared with the predictions.
A high resolution Fourier transform spectrum of mono-deuterated water vapor was studied between 11,200 and 12,400â¯cmâ1 using a Fourier transform spectrometer with the spectral resolution of 0.05â¯cmâ1, coupled to a multi-pass White-type cell that provided an optical path length of 24â¯m. A light-emitting diode was used as the radiation source to obtain a measurement signal-to-noise ratio of about 104. The rotational-vibrational assignment of more than 1560 lines was carried out using the VTT variational line list. The parameters of the spectral lines (line centers, intensities and half-widths) were determined by least-squares fitting of the Voigt contour parameters to the experimental data. A total of 584 rotational-vibrational energy levels with maximum rotational quantum numbers of Jâ¯=â16 and Kaâ¯=â9 were determined. For the first time, 64 new energy levels belonging to the nine vibrational states: (032), (112), (301), (141), (410), (221), (330), (061) and (170) were derived from the experiment.