We have derived expressions of second-order effective Hamiltonian parameters of XY4 molecules in the tetrahedral formalism (1992, J. P. Champion et al., "Spectroscopy of the Earth's Atmosphere and Interstellar Medium: Spherical Top Spectra," Academic Press, San Diego). They are written as a function
Mathematical Techniques in the Study of Coriolis Coupling in Tetrahedral XY4 Molecules
β Scribed by S. J. Cyvin; J. Brunvoll; B. N. Cyvin
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 2010
- Weight
- 192 KB
- Volume
- 73
- Category
- Article
- ISSN
- 0037-9646
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β¦ Synopsis
Relations between Coriolis coupling coefficients in tetrahedral XY4 molecules are evaluated, using the method of Ca and related matrices. It appears that the Coriolis coupling may be studied in terms of two independent Coriolis coefficients, e.g. CN and <a. For these two quantities explicit equations are deduced, containing atomic masses, vibrational frequencies (in terms of A values), and force constants of the molecule.
π SIMILAR VOLUMES
The infrared spectra of the n 3 and n 9 bands of methylene chloride have been recorded both for isotopically pure CH 2 35 Cl 2 and for a natural mixture with a resolution of 0.0025 -0.004 cm 01 ( FWHM ) in the range 600 -800 cm 01 using a Bruker IFS 120 HR Fourier Transform interferometer. The Corio
The infrared spectra of the n 3 and n 9 bands of isotopically pure CH 35 2 Cl 2 have been recorded at a resolution of 0.0025 cm 01 in the range 600-800 cm 01 with a Bruker IFS 120 HR Fourier Transform interferometer. The Coriolis coupling between the two CCl 2 stretching fundamentals n 3 and n 9 has