Strong light-matter coupling gives rise to polaritons – hybrid excitations whose mixed photonic and matter character enables control over optical, electronic and chemical properties. This Feature Article reviews the main architectures supporting polariton formation, including photonic microcavities, plasmonic nanostructures, open cavities and metasurfaces, and outlines how inorganic semiconductors, organic aggregates and hybrid systems access strong and ultrastrong coupling. Key phenomena such as coherent dynamics, vibronic interactions, dark‑state reservoirs and polariton‑mediated energy and electron transport are discussed, together with the experimental and theoretical tools used to study them. We highlight examples where strong coupling modifies charge transport, energy flow and chemical reactivity, and we summarize emerging regimes, including intermediate and dark‑strong coupling, that broaden the landscape of hybrid light-matter physics.

Strong light-matter interactions in hybrid polaritonic systems / B. Johns, A.S.. - In: CHEMICAL COMMUNICATIONS. - ISSN 1359-7345. - (2026), pp. 1-27. [Epub ahead of print] [10.1039/d6cc02672a]

Strong light-matter interactions in hybrid polaritonic systems

M. Vanzan;F. Baletto;
2026

Abstract

Strong light-matter coupling gives rise to polaritons – hybrid excitations whose mixed photonic and matter character enables control over optical, electronic and chemical properties. This Feature Article reviews the main architectures supporting polariton formation, including photonic microcavities, plasmonic nanostructures, open cavities and metasurfaces, and outlines how inorganic semiconductors, organic aggregates and hybrid systems access strong and ultrastrong coupling. Key phenomena such as coherent dynamics, vibronic interactions, dark‑state reservoirs and polariton‑mediated energy and electron transport are discussed, together with the experimental and theoretical tools used to study them. We highlight examples where strong coupling modifies charge transport, energy flow and chemical reactivity, and we summarize emerging regimes, including intermediate and dark‑strong coupling, that broaden the landscape of hybrid light-matter physics.
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
2026
20-ago-2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1268517
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