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首页> 外文期刊>journal of chemical physics >Ultrafast transient Raman investigation of geminate recombination and vibrational energy relaxation in iodine: The role of energy relaxation pathways to solvent vibrations
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Ultrafast transient Raman investigation of geminate recombination and vibrational energy relaxation in iodine: The role of energy relaxation pathways to solvent vibrations

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Direct observation of geminate recombination and vibrational energy relaxation in theXstate of iodine has been accomplished using picosecond Raman spectroscopy. The dynamics of energy relaxation from vibrational levels ranging fromv=52 tov=1 have been observed. These levels correspond to absolute energies of 9300 to 210 cmminus;1above the zero point in theXpotential. The effect of relaxation to solvent vibrations in resonance with I2vibrations has been studied. The efficiency of these vibrationalndash;vibrational relaxation channels is found to be very solvent dependent. The results suggest that the vibrational coupling between the excited iodine oscillator and the solvent is drastically affected by the nature of the normal mode character of the solvent vibration.

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