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Determination of the Vibro-Rotational Constants, the Dipole Moment’s Function and the Intensities of the HTO’s ν1 (ν3 by Usual Convention) Band
Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
Laboratoire Inter-Universitaire des Systèmes Atmosphériques, Créteil, France
- 1 Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
- 2 Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
- 3 Laboratoire de Chimie et de Physique des Matériaux (LCPM), Université de Ziguinchor, Ziguinchor, Sénégal
- 4 Laboratoire Inter-Universitaire des Systèmes Atmosphériques, Créteil, France
Journal of Modern Physics·Volume 03 (2012)·Pages 1945–1957·Published 14 December 2012·DOI10.4236/jmp.2012.312243
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Abstract
In the first part of this paper, an analysis of the high-resolution spectrum of the HTO molecule ν 1 ( ν 3 ) band, from 3630 to3950 cm – 1 , was undertaken. The rotational transition of this band was assigned using combination differences. Their wavenumbers were analyzed with a least squares fit program in order to obtain spectroscopic constants. A perturbed state has been evidenced. In the second part, with a view towards building a spectroscopic data base, a calculation of the dipolar momentum function was undertaken.
KeywordsInfrared SpectrumEnergy LevelRays IntensitiesPerturbation
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