Using a Fourier transform spectrometer, we have recorded the spectra of ozone in the region of 4600 cm 01 , with a resolution of 0.008 cm 01 . The strongest absorption in this region is due to the n 1 / n 2 / 3n 3 band which is in Coriolis interaction with the n 2 / 4n 3 band. We have been able to a
The 3ν3 + 2ν2 Band of Ozone: Line Positions and Intensities
✍ Scribed by A. Barbe; S. Bouazza; J.J. Plateaux; M. Jacon
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 219 KB
- Volume
- 162
- Category
- Article
- ISSN
- 0022-2852
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Infrared spectra of 16 O 3 have been recorded in the 4250 cm 01 region with a Fourier transform spectrometer, at 0.008 cm 01 resolution, using a White-type cell ᐉ Å 36.16 m filled with 42.8 Torr O 3 . This spectral region corresponds to the 3n 1 / n 3 band, which has never been observed before. The
The 2nu1 + nu2 + 3nu3 band of ozone, which occurs in the 5700-cm-1 region, has been observed for the first time using a Fourier Transform Spectrometer, operating at 0.008 cm-1 resolution and with a large pathlength x pressure product (3216 cm x 28.3 Torr). The assignment of rotation-vibration transi
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