The high-resolution absorption spectrum of the D 2 O molecule was recorded with the Fourier-transform intracavity laser absorption spectrometer in the region 12 570-12 820 cm -1 where the band 4Ξ½ 1 + Ξ½ 3 is located. Transitions belonging to the 4Ξ½ 1 + Ξ½ 3 band, and the bands 3Ξ½ 1 + 2Ξ½ 3 and 3Ξ½ 1 + 2
High-Resolution Fourier Transform Emission Spectroscopy of the TiCl Radical in the 420-nm Region
β Scribed by Takashi Imajo; DongBing Wang; Keiichi Tanaka; Takehiko Tanaka
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 308 KB
- Volume
- 203
- Category
- Article
- ISSN
- 0022-2852
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β¦ Synopsis
Emission spectra of the TiCl radical in the 420-nm region have been observed at a resolution of 0.04 cm Οͺ1 using a Fourier transform spectrometer. A new electronic assignment of 4 β«-X 4 β½ has been proposed. Rotational analysis has been provided for the 0 -0 and 1-1 vibrational bands of the 4 β« 5/ 2 -X 4 β½ 3/ 2 and 4 β« 7/ 2 -X 4 β½ 5/ 2 spin components and the 0 -0 band of 4 β« 9/ 2 -X 4 β½ 7/ 2 .
π SIMILAR VOLUMES
The high-resolution Fourier transform spectrum of the D 2 O molecule were recorded and analyzed in the region near 0.97 Β΅m (10 200-10 440 cm -1 ) where the bands of the v = 4 (v = v 1 + v 2 /2 + v 3 ) polyad are located. Transitions belonging to the strongest band of the polyad, 3Ξ½ 1 + Ξ½ 3 , are ass
The lowest fundamental band \(\nu_{13}\) of triacetylene \(\left(\mathrm{HC}_{6} \mathrm{H}\right)\) was measured in high resolution using a Fourier transform IR spectrometer in the range from 27 to \(227 \mathrm{~cm}^{-1}\). The resolution achieved was about \(0.0018 \mathrm{~cm}^{-1}\). The rotati
Ultraviolet emission spectrum of the B 2 βΊ Ο© (v Ο 0)-X 2 βΊ Ο© (v Ο 0) transition of the PN Ο© ion has been observed at a resolution of 0.05 cm Οͺ1 by a Fourier transform spectrometer. The rotational analysis led to a great improvement of rotational constants in the B 2 βΊ Ο© (v Ο 0) and X 2 βΊ Ο© (v Ο 0) s