| Literature DB >> 29604834 |
Heilong Wang1, Yong Yu2, Yao Chang2, Shu Su2, Shengrui Yu3, Qinming Li2, Kai Tao2, Hongli Ding2, Jaiyue Yang2, Guanglei Wang2, Li Che1, Zhigang He2, Zhichao Chen2, Xingan Wang4, Weiqing Zhang2, Dongxu Dai2, Guorong Wu2, Kaijun Yuan2, Xueming Yang2.
Abstract
Photodissociation dynamics of H2O via the F̃ state at 111.5 nm were investigated using the high resolution H-atom Rydberg "tagging" time-of-flight (TOF) technique, in combination with the tunable vacuum ultraviolet free electron laser at the Dalian Coherent Light Source. The product translational energy distributions and angular distributions in both parallel and perpendicular directions were derived from the recorded TOF spectra. Based on these distributions, the quantum state distributions and angular anisotropy parameters of OH (X) and OH (A) products have been determined. For the OH (A) + H channel, highly rotationally excited OH (A) products have been observed. These products are ascribed to a fast direct dissociation on the B̃1A1 state surface after multi-step internal conversions from the initial excited F̃ state to the B̃ state. While for the OH (X) + H channel, very highly rotationally excited OH (X) products with moderate vibrational excitation are revealed and attributed to the dissociation via a nonadiabatic pathway through the well-known two conical intersections between the B̃-state and the X̃-state surfaces.Entities:
Year: 2018 PMID: 29604834 DOI: 10.1063/1.5022108
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488