Vibration-rotation analysis of C2H3D from 725 to 1170 cm-1

P. Herbin, G. Blanquet, A. Valentin

Research output: Contribution to journalArticle

Abstract

The Fourier transform spectrum of CHD has been recorded from 725 to 1170 cm. Higher resolution and very accurate wavenumber determination have allowed the first observation of the ν vibration-rotation band, significant improvement in the knowledge of the other vibrational transitions ν, ν, ν, and ν occurring in this spectral range, and a precise determination of the ground state rotational constants.
Original languageEnglish
Pages (from-to)390-398
Number of pages9
JournalJournal of molecular spectroscopy
Volume127
Issue number2
Publication statusPublished - 1 Feb 1988

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Ground state
Fourier transforms
vibration
ground state
high resolution

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Herbin, P. ; Blanquet, G. ; Valentin, A. / Vibration-rotation analysis of C2H3D from 725 to 1170 cm-1. In: Journal of molecular spectroscopy. 1988 ; Vol. 127, No. 2. pp. 390-398.
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Vibration-rotation analysis of C2H3D from 725 to 1170 cm-1. / Herbin, P.; Blanquet, G.; Valentin, A.

In: Journal of molecular spectroscopy, Vol. 127, No. 2, 01.02.1988, p. 390-398.

Research output: Contribution to journalArticle

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T1 - Vibration-rotation analysis of C2H3D from 725 to 1170 cm-1

AU - Herbin, P.

AU - Blanquet, G.

AU - Valentin, A.

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PY - 1988/2/1

Y1 - 1988/2/1

N2 - The Fourier transform spectrum of CHD has been recorded from 725 to 1170 cm. Higher resolution and very accurate wavenumber determination have allowed the first observation of the ν vibration-rotation band, significant improvement in the knowledge of the other vibrational transitions ν, ν, ν, and ν occurring in this spectral range, and a precise determination of the ground state rotational constants.

AB - The Fourier transform spectrum of CHD has been recorded from 725 to 1170 cm. Higher resolution and very accurate wavenumber determination have allowed the first observation of the ν vibration-rotation band, significant improvement in the knowledge of the other vibrational transitions ν, ν, ν, and ν occurring in this spectral range, and a precise determination of the ground state rotational constants.

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