Rotational spectra of zinc monohydride and deuteride in the \(X^{2} \Sigma^{+}\)vibronic ground state were observed by using a source-modulated submillimeter-wave spectrometer. The zinc hydride or deuteride radical was generated in the heat-pipe stainless steel cell by dc glow discharge in a mixture
Far-Infrared Rotational Spectra of ZnH and ZnD in theX2Σ+(v= 0) State
✍ Scribed by F.Akif Tezcan; Thomas D. Varberg; Fred Stroh; Kenneth M. Evenson
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 252 KB
- Volume
- 185
- Category
- Article
- ISSN
- 0022-2852
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✦ Synopsis
Several rotational transitions of zinc hydride and deuteride within the £ Å 0 level of the X 2 S / state have been measured in both electron spin components over the ranges NЉ Å 2 to 10 for ZnH and NЉ Å 9 to 21 for ZnD. A leastsquares fit to these data in combination with low-N microwave data measured by other workers has resulted in improved values of the rotational, fine, and hyperfine structure constants. The values of the proton hyperfine constants are discussed in the context of a molecular orbital analysis of zinc hydride.
📜 SIMILAR VOLUMES
We have made highly accurate measurements of the absorption spectrum of the 14 NO and 15 NO isotopomers of nitric oxide in the far-infrared. Pure rotational transitions up to JЉ ϭ 37 1 2 within the 2 ⌸ 1/2 and 2 ⌸ 3/2 spin components and several 2 ⌸ 3/2 4 2 ⌸ 1/2 fine-structure transitions were reco