Imaging CF<sub>3</sub>I conical intersection and photodissociation dynamics with ultrafast electron diffraction.

Yang, Jie; Zhu, Xiaolei; Wolf, Thomas J A; Li, Zheng; Nunes, J Pedro F; Coffee, Ryan; Cryan, James P; Gühr, Markus et al. · Science · 2018

basic_science · Level V

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Abstract

Conical intersections play a critical role in excited-state dynamics of polyatomic molecules because they govern the reaction pathways of many nonadiabatic processes. However, ultrafast probes have lacked sufficient spatial resolution to image wave-packet trajectories through these intersections directly. Here, we present the simultaneous experimental characterization of one-photon and two-photon excitation channels in isolated CF<sub>3</sub>I molecules using ultrafast gas-phase electron diffraction. In the two-photon channel, we have mapped out the real-space trajectories of a coherent nuclear wave packet, which bifurcates onto two potential energy surfaces when passing through a conical intersection. In the one-photon channel, we have resolved excitation of both the umbrella and the breathing vibrational modes in the CF<sub>3</sub> fragment in multiple nuclear dimensions. These findings benchmark and validate ab initio nonadiabatic dynamics calculations.