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  4. Modification of Ground-State Chemical Reactivity Via Light–Matter Coherence in Infrared Cavities
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Modification of Ground-State Chemical Reactivity Via Light–Matter Coherence in Infrared Cavities

Journal
Science
ISSN
1095-9203
Date Issued
2023
Author(s)
Herrera-Urbina, F  
Triana-Galvis, J  
DOI
https://doi.org/10.1126/science.ade7147
Abstract
Reaction-rate modifications for chemical processes due to strong coupling between reactant molecular vibrations and the cavity vacuum have been reported; however, no currently accepted mechanisms explain these observations. In this work, reaction-rate constants were extracted from evolving cavity transmission spectra, revealing resonant suppression of the intracavity reaction rate for alcoholysis of phenyl isocyanate with cyclohexanol. We observed up to an 80% suppression of the rate by tuning cavity modes to be resonant with the reactant isocyanate (NCO) stretch, the product carbonyl (CO) stretch, and cooperative reactant-solvent modes (CH). These results were interpreted using an open quantum system model that predicted resonant modifications of the vibrational distribution of reactants from canonical statistics as a result of light–matter quantum coherences, suggesting links to explore between chemistry and quantum science. Copyright © 2023 the authors, some rights reserved.
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