Monitoring conical intersections in the ring opening of furan by attosecond stimulated X-ray Raman spectroscopy

Abstract

Attosecond X-ray pulses are short enough to capture snapshots of molecules undergoing nonadiabatic electron and nuclear dynamics at conical intersections (CoIns). We show that a stimulated Raman probe induced by a combination of an attosecond and a femtosecond pulse has a unique temporal and spectral resolution for probing the nonadiabatic dynamics and detecting the ultrafast (∼4.5 fs) passage through a CoIn. This is demonstrated by a multiconfigurational self-consistent-field study of the dynamics and spectroscopy of the furan ring-opening reaction. Trajectories generated by surface hopping simulations were used to predict Attosecond Stimulated X-ray Raman Spectroscopy signals at reactant and product structures as well as representative snapshots along the conical intersection seam. The signals are highly sensitive to the changes in nonadiabatically coupled electronic structure and geometry.

Description
Keywords
Aromatic compounds, Dynamics, Electromagnetic pulse, Electronic structure, Organic pollutants, Raman spectroscopy, Attosecond x-ray pulse, Conical intersection, Multiconfigurational self-consistent fields, Non-adiabatic dynamics, Nuclear dynamics, Product structure, Stimulated Raman, Temporal and spectral resolutions, X rays
Citation
Hua, W., Oesterling, S., Biggs, J. D., Zhang, Y., Ando, H., de Vivie-Riedle, R., et al. (2015). Monitoring conical intersections in the ring opening of furan by attosecond stimulated X-ray Raman spectroscopy. 3(2). https://doi.org//10.1063/1.4933007
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License
CC BY 3.0 Unported