Steacie Institute for Molecular Sciences, National Research Council, 100 Sussex Drive, Ottawa, Ontario K1A 0R6, Canada.
Phys Chem Chem Phys. 2011 Nov 7;13(41):18447-67. doi: 10.1039/c1cp22031d. Epub 2011 Sep 22.
Time-resolved photoelectron spectroscopy (TRPES) is a powerful tool for the study of intramolecular dynamics, particularly excited state non-adiabatic dynamics in polyatomic molecules. Depending on the problem at hand, different levels of TRPES measurements can be performed: time-resolved photoelectron yield; time- and energy-resolved photoelectron yield; time-, energy-, and angle-resolved photoelectron yield. In this pedagogical overview, a conceptual framework for time-resolved photoionization measurements is presented, together with discussion of relevant theory for the different aspects of TRPES. Simple models are used to illustrate the theory, and key concepts are further amplified by experimental examples. These examples are chosen to show the application of TRPES to the investigation of a range of problems in the excited state dynamics of molecules: from the simplest vibrational wavepacket on a single potential energy surface; to disentangling intrinsically coupled electronic and nuclear motions; to identifying the electronic character of the intermediate states involved in non-adiabatic dynamics by angle-resolved measurements in the molecular frame, the most complete measurement.
时间分辨光电子能谱(TRPES)是研究分子内动力学的强大工具,特别是在多原子分子中研究激发态非绝热动力学。根据手头的问题,可以进行不同水平的 TRPES 测量:时间分辨光电子产额;时间和能量分辨光电子产额;时间、能量和角度分辨光电子产额。在本教学概述中,提出了时间分辨光致电离测量的概念框架,并讨论了 TRPES 的不同方面的相关理论。使用简单的模型来说明理论,并通过实验示例进一步放大关键概念。这些示例旨在展示 TRPES 在分子激发态动力学的一系列问题中的应用:从单个势能表面上最简单的振动波包;到解耦固有耦合的电子和核运动;再到通过分子框架中的角度分辨测量来识别非绝热动力学中涉及的中间态的电子特性,这是最完整的测量。