Holland David M P, Suchan Jiří, Janoš Jiří, Bacellar Camila, Leroy Ludmila, Barillot Thomas R, Longetti Luca, Coreno Marcello, de Simone Monica, Grazioli Cesare, Chergui Majed, Muchová Eva, Ingle Rebecca A
STFC, Daresbury Laboratory, Daresbury, Warrington, Cheshire WA4 4AD, UK.
Institute for Advanced Computational Science, Stony Brook University, Stony Brook, New York 11794-5250, USA.
Phys Chem Chem Phys. 2024 May 29;26(21):15130-15142. doi: 10.1039/d4cp00053f.
High-resolution carbon K-edge X-ray photoelectron, X-ray absorption, non-resonant and resonant Auger spectra are presented of gas phase -1,3-butadiene alongside a detailed theoretical analysis utilising nuclear ensemble approaches and vibronic models to simulate the spectroscopic observables. The resonant Auger spectra recorded across the first pre-edge band reveal a complex evolution of different electronic states which remain relatively well-localised on the edge or central carbon sites. The results demonstrate the sensitivity of the resonant Auger observables to the weighted contributions from multiple electronic states. The gradually evolving spectral features can be accurately and feasibly simulated within nuclear ensemble methods and interpreted with the population analysis.
本文展示了气相-1,3-丁二烯的高分辨率碳K边X射线光电子能谱、X射线吸收谱、非共振和共振俄歇谱,并利用核系综方法和振子模型进行了详细的理论分析,以模拟光谱观测值。在第一个预边带记录的共振俄歇谱揭示了不同电子态的复杂演化,这些电子态在边缘或中心碳原子位点上保持相对较好的局域化。结果表明,共振俄歇观测值对多个电子态的加权贡献很敏感。在核系综方法中,可以准确且可行地模拟逐渐演化的光谱特征,并通过布居分析进行解释。