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Observation of the molecular response to light upon photoexcitation

Chemistry

Observation of the molecular response to light upon photoexcitation

H. Yong, N. Zotev, et al.

This groundbreaking research by Haiwang Yong and colleagues directly measures the initial redistribution of electron density in 1,3-cyclohexadiene upon optical excitation using ultrafast x-ray scattering. The findings reveal exciting insights into the excited state electron density distributions, with remarkable spatial resolution and corroboration with theoretical predictions.... show more
Abstract
When a molecule interacts with light, its electrons can absorb energy from the electromagnetic field by rapidly rearranging their positions. This constitutes the first step of photochemical and photophysical processes that include primary events in human vision and photosynthesis. Here, we report the direct measurement of the initial redistribution of electron density when the molecule 1,3-cyclohexadiene (CHD) is optically excited. Our experiments exploit the intense, ultrashort hard x-ray pulses of the Linac Coherent Light Source (LCLS) to map the change in electron density using ultrafast x-ray scattering. The nature of the excited electronic state is identified with excellent spatial resolution and in good agreement with theoretical predictions. The excited state electron density distributions are thus amenable to direct experimental observation.
Publisher
Nature Communications
Published On
May 01, 2020
Authors
Haiwang Yong, Nikola Zotev, Jennifer M. Ruddock, Brian Stankus, Mats Simmermacher, Andrés Moreno Carrascosa, Wenpeng Du, Nathan Goff, Yu Chang, Darren Bellshaw, Mengning Liang, Sergio Carbajo, Jason E. Koglin, Joseph S. Robinson, Sébastien Boutet, Michael P. Minitti, Adam Kirrander, Peter M. Weber
Tags
electron density
1,3-cyclohexadiene
ultrafast x-ray scattering
optical excitation
excited state
redistribution
experimental observation
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