The observation of new fundamental frequencies for the potassium superoxide KO1 is reported for different isotopic species: v3 of 39K'602, 39K's02 and 39K'60'80, and v2 of 4\*K'602, 41K'\*02, 4'K'601s0 and 39K'70180. Using these values and a fixed O-0 internuclear distance, we calculated the geometr
A Monte Carlo and transfer-matrix grid path-integral study of the vibrational structure of Br2 in solid argon
✍ Scribed by J.P. Prates Ramalho; B.J. Costa Cabral; F.M.S. Silva Fernandes
- Publisher
- Elsevier Science
- Year
- 1991
- Tongue
- English
- Weight
- 613 KB
- Volume
- 184
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
A transfer-matrix grid path-integral method recently proposed, has been used to study vibrational intramolecular potentials for the ground X ( '&,+.) and excited B ( 51&+U) electronic states of a Br2 molecule solvated in a matrix of argon. The Monte Carlo method has been used to generate the set of configurations for a mixed quantum-classical system, consisting of a Morse oscillator, coupled to the argon matrix, assumed as a classical microscopic environment. It has been verified that when compared to the gas phase, the intramolecular potentials in the argon matrix are modified in a non-negligible way. By including transitions over the discrete vibrational levels for the different electronic states of the diatomic molecule in the matrix, good agreement with the experimental results of Friedman, Rousseau and Bondybey for the red-shift of the absorption profile (AP) from the Raman excitation profiles (REP) is observed, suggesting that a discrete resonance Raman scattering process is involved.
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