With an infrared diode laser spectrometer in pulse mode we studied the N2 broadening of H2S absorption lines in the nu1, nu2, and nu3 bands. Altogether 22 lines were investigated: 16 lines from the R branch of the nu1 band (3
Determination of Line Intensities in the ν1+ ν3Band of SO2by Applying a Tunable Diode Laser Spectrometer
✍ Scribed by B. Sumpf
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 679 KB
- Volume
- 186
- Category
- Article
- ISSN
- 0022-2852
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✦ Synopsis
Line intensities for 109 lines in the nu1 + nu3 band of 32SO2, 4 lines in the nu1 + nu3 band of 34SO2, and 7 lines in the nu1 + nu2 + nu3 - nu2 band of 32SO2 were determined in the spectral region between 2464 cm-1 and 2503 cm-1 by applying a high resolution tunable diode laser spectrometer. The transitions from the nu1 + nu3 band of 32SO2 cover the quantum number ranges 2
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The room temperature infrared spectra of the a-type n 1 / n 3 , n 1 / n 2 / n 3 0 n 2 , and 2n 1 / n 3 bands of 32 SO 2 and the n 1 / n 3 band of 34 SO 2 have been recorded using a difference-frequency laser spectrometer and completely analyzed. It is possible to reproduce the rotational energy leve
High resolution Fourier transform absorption spectra of the 14 N 16 O 2 molecule recorded in the 2630-3510 cm 01 spectral region have been analysed and lines of the n 1 / n 3 band of this molecule have been assigned for K a values ranging from 0 to 10 and N values up to 55. The spin-rotation energy
With a tunable diode-laser spectrometer, absolute line intensity measurements have been made in the spectrum of cyanogen chloride in the vicinity of 710 cm -1 . The intensity of the fundamental ν 1 band has been found to be 6.088 cm -2 atm -1 for the 35 ClCN isotopomer and 7.121 cm -2 atm -1 for the