Collisional self-broadening coefficients for 21 lines in the \(P\) and \(R\) branches of the \(v_{5}\) band of \(\mathrm{C}_{2} \mathrm{H}_{2}\) at low temperature ( \(173 \mathrm{~K}\) ) have been measured using a tunable diode laser spectrometer and a low-temperature variable path length absorptio
Self-broadening coefficients and line strengths in the v3 band of CH335C1 at low temperature
β Scribed by G. Blanquet; J. Walrand; J.-C. Populaire; J.-P. Bouanich
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 431 KB
- Volume
- 53
- Category
- Article
- ISSN
- 0022-4073
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π SIMILAR VOLUMES
H 2 -broadening coefficients have been measured for 29 lines of C 2 H 2 at 173.2 K in the P and R branches of the Ξ½ 5 fundamental band near 13.7 Β΅m, using a tunable diode-laser spectrometer. These lines were individually fitted with a Voigt and a Rautian profile in order to determine the collisional
The self-broadening coefficients and the intensities of 29 lines in the Ξ½ 1 band of cyanogen chloride ( 35 Cl 12 C 14 N) have been measured at high resolution in the range 699-736 cm -1 , using a tunable diode-laser spectrometer. The collisional widths and most of the intensities are obtained by fit
The absolute rotationless transition moment squared for the This value is about 8.6% smaller than the value assumed for HITRAN 2000. The measured Herman-Wallis intensity factor of this band is F = 1 + 0.01168(11) m + 0.0001065(79) m 2 . The determination of self-broadening coefficients is improved