Disentangling Multiphoton Ionization and Dissociation Channels in Molecular Oxygen Using Photoelectron-Photoion Coincidence Imaging.

The journal of physical chemistry. A(2023)

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摘要
Multiphoton excitation of molecular oxygen in the 392-408 nm region is studied using a tunable femtosecond laser coupled with a double velocity map imaging photoelectron-photoion coincidence spectrometer. The laser intensity is held at ≤∼1 TW/cm to ensure excitation in the perturbative regime, where the possibility of resonance enhanced multiphoton ionization (REMPI) can be investigated. O production is found to be resonance enhanced around 400 nm via three-photon excitation to the e'Δ( = 0) state, similar to results from REMPI studies using nanosecond dye lasers. O production reaches 7% of the total ion yield around 405 nm due to two processes: autoionization following five-photon excitation of O, producing O(X()) in a wide range of vibrational states followed by two- or three-photon dissociation, or six-photon excitation to a superexcited O** state followed by neutral dissociation and subsequent ionization of the electronically excited O atom. Coincidence detection is shown to be crucial in identifying these competing pathways.
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关键词
multiphoton ionization,molecular oxygen,photoelectron–photoion,dissociation channels
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