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High-Resolution Infrared Diode Laser Spectroscopy ofX2Π CCl

✍ Scribed by Pei Jin; Bor-Chen Chang; Ruian Fei; Trevor J. Sears


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
188 KB
Volume
182
Category
Article
ISSN
0022-2852

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✦ Synopsis


The high-resolution transient infrared spectrum of X 2 P CCl near 12.2 mm was measured by diode laser absorption spectroscopy following 193 nm excimer laser photolysis of CHClBr 2 . Many lines in the £ Å 1-0, 2 R 1, 3-2, 4-3, and 5-4 bands for C 35 Cl were identified in addition to lines in the first four of these vibrational bands for C 37 Cl. The new data were combined in a least squares fit to all the available high resolution infrared data, and combination differences from the electronic spectrum of the radical, including both chlorine isotopes simultaneously. The equilibrium molecular parameters so determined are more complete than previously available and should reliably predict higher vibrational bands. The results were used to estimate a potential curve for the radical, from the Rydberg-Klein-Rees procedure, and fits to the data for the individual isotopes allowed a separation of the spin-rotation and centrifugal distortion of the spin-orbit fine structure terms.


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