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- W4292881715 abstract "We study the interplay between disorder and light-matter coupling by considering a disordered one-dimensional chain of lossy dipoles coupled to a multimode optical cavity, through a microscopically derived Hamiltonian. Such a system, hosting polaritonic excitations, may be realized experimentally in a wide range of platforms under strong light-matter coupling. By analyzing both the eigenspectrum and the driven-dissipative transport properties of our system, we find that in the strong-coupling regime, increasing disorder leads almost uncoupled dark states to acquire a photonic part, allowing them to inherit polaritonic long-range transport characteristics. Crucially, we show that this disorder-enhanced transport mechanism is increasingly noticeable when the considered dipoles are lossier." @default.
- W4292881715 created "2022-08-24" @default.
- W4292881715 creator A5066766535 @default.
- W4292881715 creator A5073990764 @default.
- W4292881715 date "2022-12-22" @default.
- W4292881715 modified "2023-10-18" @default.
- W4292881715 title "Disorder-enhanced transport in a chain of lossy dipoles strongly coupled to cavity photons" @default.
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- W4292881715 doi "https://doi.org/10.1103/physrevb.106.245424" @default.
- W4292881715 hasPublicationYear "2022" @default.