首页> 外文期刊>The Journal of Chemical Physics >DEGENERATE FOUR-WAVE MIXING AND PHOTOFRAGMENT YIELD SPECTROSCOPIC STUDY OF JET-COOLED SO2 IN THE (CB2)-B-1 STATE - INTERNAL CONVERSION FOLLOWED BY DISSOCIATION IN THE X STATE
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DEGENERATE FOUR-WAVE MIXING AND PHOTOFRAGMENT YIELD SPECTROSCOPIC STUDY OF JET-COOLED SO2 IN THE (CB2)-B-1 STATE - INTERNAL CONVERSION FOLLOWED BY DISSOCIATION IN THE X STATE

机译:(CB2)-B-1状态的简并冷却SO2的简并四波混频和光电子能谱研究-X态解离后的内部转化

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The predissociation mechanism of the (C) over tilde state of SO2 have been investigated by the measurements of degenerate four-wave mixing (DFWM), laser-induced fluorescence (LIF) and photofragment yield spectra. The DFWM spectrum of jet-cooled SO2 was measured under a high power condition where the DFWM signal corresponds well to the absorption spectrum. Relative fluorescence quantum yields of various vibronic bands were obtained by comparing the DFWM spectrum with the I-IF spectrum, It was found that the fluorescence quantum yields of the vibronic levels involving anti-symmetric stretching (v(3)) vibration are considerably smaller than those of other levels, The result indicates that the nonradiative process of the C state is initiated as the internal conversion to the (X) over tilde state and v(3) acts as the promoting mode, By observing the O atom photofragment yield spectrum we confirmed that the predissociation occurs from the (1,4,2) level. Vibronic dependence of the rise time of the O atom generation was found to be in accordance with those of the fluorescence decay rate, The obtained results represent that the dissociation occurs immediately after the internal conversion to the X state. (C) 1997 American Institute of Physics. [References: 34]
机译:通过测量简并四波混频(DFWM),激光诱导荧光(LIF)和光碎裂产物光谱,研究了(C)在SO2的tilde状态下的预离解机理。喷射冷却的SO2的DFWM光谱是在高功率条件下测量的,其中DFWM信号与吸收光谱很好地对应。通过比较DFWM谱图和I-IF谱图,获得了各种振动带的相对荧光量子产率,发现涉及反对称拉伸(v(3))振动的振动能级的荧光量子产率远小于结果表明,C态的非辐射过程是由内向to代态向(X)的内部转化而引发的,而v(3)则是促进模式,通过观察O原子的光碎裂产物光谱证实从(1,4,2)水平发生了预离解。发现O原子产生的上升时间的振动依存性与荧光衰减率的依从性有关。获得的结果表明,在内部转化为X状态之后立即发生解离。 (C)1997美国物理研究所。 [参考:34]

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