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Effects of different initial condition samplings on photodynamics and spectrum of pyrrole

机译:不同初始条件采样对吡咯光动力学和光谱的影响

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Semiclassical simulations of spectrum and dynamics of complex molecules require statistical sampling of coordinates and momenta. The effects of using thermal and quantum samplings are analyzed taking pyrrole as a test case. It is shown that there are significant differences in the results obtained with each of these two approaches. Overall, quantum sampling based on a Wigner distribution renders superior results, comparing well to the experiments. Dynamics simulations based on surface hopping and ADC(2) reveal that pyrrole internal conversion to the ground state occurs not only through H-elimination path, but also through ring-distortion paths, which have been systematically neglected by diverse experimental setups. The analysis of the reaction paths also shows that the ionization potential varies by more than 5 eV between ionization of the excited state at the Franck-Condon region and at the intersections with the ground state. This feature may have major implications for time-resolved photoelectron spectroscopy. (c) 2015 Wiley Periodicals, Inc.
机译:复杂分子的光谱和动力学的半经典模拟需要对坐标和动量进行统计采样。以吡咯为测试案例,分析了使用热采样和量子采样的效果。结果表明,这两种方法所获得的结果均存在显着差异。总体而言,与实验相比,基于维格纳分布的量子采样可提供更好的结果。基于表面跳变和ADC(2)的动力学仿真表明,吡咯内部转换为基态不仅通过H消除路径发生,而且通过环畸变路径发生,而这些路径已被各种实验设置系统地忽略了。反应路径的分析还表明,在Franck-Condon区域和与基态相交处的激发态的电离之间,电离电势变化超过5 eV。此功能可能对时间分辨光电子能谱有重大影响。 (c)2015年威利期刊有限公司

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