The rotational spectral lines of the 13 C isotopic species of CCS ( 13 CCS, C 13 CS, and 13 C 13 CS) have been observed using a Fourier transform microwave spectrometer in combination with a pulsed-discharge nozzle. The hyperfineresolved J N Γ 1 0 -0 1 , J N Γ 2 1 -1 0 , and J N Γ 3 2 -2 1 transitio
Fourier Transform Microwave Spectroscopy of AlBr
β Scribed by Kaley A. Walker; Michael C.L. Gerry
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 85 KB
- Volume
- 193
- Category
- Article
- ISSN
- 0022-2852
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The lowest \(J=\frac{3}{2}-\frac{1}{2}\) rotational transition of the \(\mathrm{CCN}\) radical in its \(X^{2} \Pi_{1 / 2}\) state has been observed by using a Fabry-Perot-type Fourier-transform microwave spectrometer combined with a pulsed discharge nozzle. The radical has been generated by a pulsed
O-enriched, monolabeled perchloryl fluoride, 19 F 35/37 Cl 16 O 2 18 O, has been synthesized. Its rotational spectrum has been studied in the 4-22 GHz region. In addition, the spectra of the symmetric isotopomers 19 F 35/37 Cl 16 O 3 have been reinvestigated. Rotational and centrifugal distortion co
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