BACKGROUND One of the most important phenomena in cavity quantum electrodynamics (cQED) is the so-called strong coupling regime, which appears when the interaction …
LP Lindoy, A Mandal, DR Reichman - Nature Communications, 2023 - nature.com
Recent experiments suggest that ground state chemical reactivity can be modified when placing molecular systems inside infrared cavities where molecular vibrations are strongly …
Over the past decade, the possibility of manipulating chemistry and material properties using hybrid light–matter states has stimulated considerable interest. Hybrid light–matter states …
Here, we review the design of optical cavities, transient and modulated responses, and theoretical models relevant to vibrational strong coupling (VSC). While planar Fabry–Perot …
The coherent exchange of energy between materials and optical fields leads to strong light– matter interactions and so-called polaritonic states with intriguing properties, halfway …
Chemical manifestations of strong light–matter coupling have recently been a subject of intense experimental and theoretical studies. Here we review the present status of this field …
Molecular polaritons result from light-matter coupling between optical resonances and molecular electronic or vibrational transitions. When the coupling is strong enough, new …
Strong light–matter interaction in cavity environments is emerging as a promising approach to control chemical reactions in a non-intrusive and efficient manner. The underlying …
Polariton chemistry has emerged as an appealing branch of synthetic chemistry that promises mode selectivity and a cleaner approach to kinetic control. Of particular interest are …