Max Born Institute, Max-Born-Str. 2a, 12489 Berlin, Germany.
J Chem Phys. 2013 Sep 28;139(12):124309. doi: 10.1063/1.4820947.
Valence band photoionization of CO2 has been studied by photoelectron spectroscopy using a velocity map imaging spectrometer and synchrotron radiation. The measured data allow retrieving electronic and vibrational branching ratios, vibrationally resolved asymmetry parameters, and the total electron yield which includes multiple strong resonances. Additionally, the spectrum of low kinetic energy electrons has been studied in the resonant region, and the evolution with photon energy of one of the forbidden transitions present in the slow photoelectrons spectrum has been carefully analyzed, indicating that in the presence of auto-ionizing resonances the vibrational populations of the ion are significantly redistributed.
采用速度成像谱仪和同步辐射光电子能谱研究了 CO2 的价带光致电离。所测数据可以得到电子和振动分支比、振动分辨不对称参数以及包括多个强共振的总电子产额。此外,还研究了共振区低动能电子的光谱,仔细分析了慢光电子光谱中一个禁戒跃迁随光子能量的演化,表明在自电离共振存在的情况下,离子的振动布居数会发生显著重分布。