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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Ultrafast dissociation of F 1s excited SF6 probed by electron-ion momentum coincidence spectroscopy
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Ultrafast dissociation of F 1s excited SF6 probed by electron-ion momentum coincidence spectroscopy

机译:电子离子动量符合光谱探测F 1s激发的SF6的超快解离

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Ultrafast dissociation of the SF6 molecule following F 1s --> a*(1g) excitation has been studied by the coincident measurement of the kinetic energy of the resonantly emitted electron and the momentum of the fragment ion. The nuclear motion takes place on the same time scale as the Auger decay, leading to atomic-like F (1s)-Auger lines in the electron spectrum. De-tuning from the excitation resonance changes the ratio of the two time scales involved. We measured the shift of the atomic-like Auger line and the changes in the parameters that describe the corresponding ionic fragmentation dynamics as a function of the detuning energy. Our data are consistent with predictions based on electron spectroscopic measurements that resolved the Doppler-splitting of the Auger-line. We found that unlike in diatomic molecules a substantial fraction of the excitation energy remains in the neutral fragment(s).
机译:通过同时测量共振发射电子的动能和碎片离子的动量,研究了SF6分子在F 1s-> a *(1g)激发后的超快解离。核运动在与俄歇衰变相同的时间尺度上发生,从而导致电子光谱中的原子状F(1s)-俄歇线。与激励共振失谐会改变所涉及的两个时标的比率。我们测量了类似原子的俄歇线的位移以及描述相应离子碎片动力学随失谐能量变化的参数的变化。我们的数据与基于电子光谱测量的预测相符,该测量解决了俄歇线的多普勒分裂现象。我们发现,与双原子分子不同,激发能的很大一部分保留在中性片段中。

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