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April 28, 2024The Journal of Chemical Physics12 citationsOpen Access

Ultrafast photochemistry and electron-diffraction spectra in n → (3s) Rydberg excited cyclobutanone resolved at the multireference perturbative level

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VJVishal Kumar JaiswalFMF. MontorsiFAFlavia Aleotti

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Abstract

We study the ultrafast time evolution of cyclobutanone excited to the singlet n → Rydberg state through non-adiabatic surface-hopping simulationsperformed at extended multi-state complete active space second-order perturbation (XMS-CASPT2) level of theory. These dynamics predict relaxation to the ground-state with a timescale of 822 ± 45 fs with minimal involvement of the triplets. The major relaxation path to the ground-state involves a three-state degeneracy region and leads to a variety of fragmented photoproducts. We simulate the resulting time-resolved electron-diffraction spectra, which track the relaxation of the excited state and the formation of various photoproducts in the ground state.

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Jaiswal et al. (2024) studied this question.

synapsesocial.com/papers/68e6d2e5b6db643587650a2ahttps://doi.org/10.1063/5.0203624
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