School of Chemistry, University of Bristol, Bristol BS8 1TS, United Kingdom.
State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.
J Chem Phys. 2018 Aug 28;149(8):080901. doi: 10.1063/1.5047911.
Determining the product velocities offers one of the most direct and penetrating experimental probes of the dynamics of gas phase molecular photodissociation and bimolecular collision processes and provides an obvious point of contact with theoretical molecular dynamics simulations, potential energy surfaces, and non-adiabatic couplings between such surfaces. This perspective traces the development of the H Rydberg atom translational spectroscopy technique from a serendipitous first encounter through to the present, highlights the advances that make it the method of choice for studying many benchmark photofragmentation and photoinduced collision processes that yield H (or D) atoms amongst the products, and anticipates some future opportunities afforded by the technique.
确定产物速度为气相分子光解和双分子碰撞过程的动力学提供了最直接和最具穿透力的实验探测手段,并与理论分子动力学模拟、势能面以及这些表面之间的非绝热耦合提供了明显的接触点。本综述追溯了 HRydberg 原子平移光谱技术从偶然的首次相遇发展到现在的历程,突出了使该技术成为研究许多基准光解和光诱导碰撞过程的首选方法的进展,这些过程的产物中包括 H(或 D)原子,并预测了该技术未来的一些机会。