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Absorption profiles of HCl for the J = 1-0 rotational transition: Foreign-gas effects measured for N2, O2, and Ar
Authors:Isamu Morino  Koichi M.T. Yamada
Affiliation:National Institute of Advanced Industrial Science and Technology (AIST), AIST Tsukuba-West, EMTech, Onogawa 16-1, Tsukuba, Ibaraki 305-8569, Japan
Abstract:Line profiles of the J = 1-0 transition of the hydrogen chloride, H35Cl and H37Cl isotopomers, were measured with a BWO-based submillimeter-wave spectrometer at AIST in real form: three hyperfine transitions for each isotopomer, i.e., total six lines at 625 and 626 GHz. The effect of foreign gases on the broadening and shift was determined for N2, O2, and Ar. The modified Voigt function was applied as the line shape function for preliminary analysis, where the collisional-narrowing effect was clearly observed. In the final analysis, we applied the Galatry function and determined the integral intensity, line center position, Lorentzian width, and contraction parameter for each absorption line. The magnitudes of the foreign-gas pressure-broadening coefficients decrease in order of N2, O2, and Ar. The line-shift coefficients were clearly observed, the magnitudes of which decrease in order of Ar, O2, and N2. The pressure dependence of contraction parameter was determined, although with poor precision.
Keywords:Hydrogen chloride   Submillimeter-wave   Real line-profile measurement   Modified Voigt and Galatry profile functions   Foreign-gas pressure broadening and shift
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