The first reported spectrum of the \(\mathrm{CO}-\mathrm{Xe}\) van der Waals complex has been studied in the 4.7\(\mu \mathrm{m}\) region of the \(\mathrm{CO}\) fundamental band using a long-path ( \(104 \mathrm{~m}\) ) low-temperature ( \(110 \mathrm{~K}\) ) static absorption cell and a high-resolu
Theory Untangles the High-Resolution Infrared Spectrum of the ortho-H2-CO van der Waals Complex
β Scribed by Jankowski, P.; McKellar, A. R. W.; Szalewicz, K.
- Book ID
- 111873086
- Publisher
- American Association for the Advancement of Science
- Year
- 2012
- Tongue
- English
- Weight
- 376 KB
- Volume
- 336
- Category
- Article
- ISSN
- 0036-8075
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π SIMILAR VOLUMES
The rotationally resolved spectrum of the @ band of the S, + So electronic transition of the benzene-N, van der Waals complex has been recorded and 119 transitions assigned. The G,H,.N, complex, produced in a pulsed molecular beam, was detected by mass-selected two-photon twecolour ionization employ
The high resolution IR spectra of HCCCN-CO 2 and HCCCN-N 2 have been studied using molecular beam optothermal spectroscopy. For both complexes, structural information has been obtained; HCCCN-CO 2 has been determined to be T-shaped with the CO 2 molecule at the N end of HCCCN, while N 2 -HCCCN was f