Intermolecular vibrational relaxation upon multiphoton excitation of triplet molecules by a CO2 laser

被引:0
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作者
G. A. Zalesskaya
D. L. Yakovlev
E. G. Sambor
机构
[1] National Academy of Sciences of Belarus,Institute of Molecular and Atomic Physics
来源
Optics and Spectroscopy | 2001年 / 91卷
关键词
Benzophenone; Vibrational Energy; Vibrational Level; Ground Electronic State; Polyatomic Molecule;
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摘要
Intermolecular vibrational relaxation is studied in mixtures of polyatomic molecules (benzophenone and fluorene) with bath gases after multiphoton excitation of the triplet molecules by CO2 laser radiation. The dependences of the decay rate and the intensity of laser-induced delayed fluorescence on the laser energy density ECO2 and pressure Pfg of bath gases are analyzed. They are found to be different for the fast and slow components of delayed fluorescence, which decays nonexponentially. It is shown that a change in the decay rate of the fast fluorescence component with increasing pressure Pfg is governed by the properties of vibration-translation relaxation. The efficiency β of this process is estimated in a broad range of vibrational energies. It is found that β weakly changes with increasing Evib upon excitation of molecules to high vibrational levels. The features of intermolecular vibrational relaxation at high densities of anharmonically coupled vibrational states are discussed.
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页码:593 / 599
页数:6
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