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FIR LASER ASSIGNMENTS FOR HYDRAZINE BY FOURIER TRANSFORM SPECTROSCOPY

Li‐Hong Xu, Jon T. Hougen, J. W. C. Johns, Zitong Lu

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Abstract

The Fourier transform infrared spectrum of hydrazine $(H_{2}N-NH_{2})$ has been recorded between 800 and $1400 cm^{-1}$ on the modified DA3.002 Bomem spectrometer at a resolution of $0.003 cm^{-1}$ at the Herzberg Institute of Astrophysics, National Research Council, Ottawa. The strong antisymmetric amino-wagging band overlaps with the $CO_{2}$ laser bands including the hot bands. Numerous FIR laser emissions have been reported. This paper presents current progress in assigning some of the FIR laser lines by the FTS method.

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What this paper is about

The Fourier transform infrared spectrum of hydrazine $(H_{2}N-NH_{2})$ has been recorded between 800 and $1400 cm^{-1}$ on the modified DA3.002 Bomem spectrometer at a resolution of $0.003 cm^{-1}$ at the Herzberg Institute of Astrophysics, National Research Council, Ottawa. The strong antisymmetric amino-wagging band overlaps with the $CO_{2}$ laser bands including the hot bands. Numerous FIR laser emissions have been reported. This paper presents current progress in assigning some of the FIR laser lines by the FTS method.

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Available abstract

The Fourier transform infrared spectrum of hydrazine $(H_{2}N-NH_{2})$ has been recorded between 800 and $1400 cm^{-1}$ on the modified DA3.002 Bomem spectrometer at a resolution of $0.003 cm^{-1}$ at the Herzberg Institute of Astrophysics, National Research Council, Ottawa. The strong antisymmetric amino-wagging band overlaps with the $CO_{2}$ laser bands including the hot bands. Numerous FIR laser emissions have been reported. This paper presents current progress in assigning some of the FIR laser lines by the FTS method.

Key concepts: Hydrazine (antidepressant), Spectroscopy, Fourier transform spectroscopy, Laser, Fourier transform infrared spectroscopy, Fourier transform, Computer science, Materials science

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