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Magneto-transport controlled by Landau polariton states

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arxiv 1805.00846 v3 pith:4GGD2C7Y submitted 2018-05-02 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords couplingirradiationlinearmagneto-transportpolaritonsresistivitystatesapplications
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Hybrid excitations, called polaritons, emerge in systems with strong light-matter coupling. Usually, they dominate the linear and nonlinear optical properties with applications in quantum optics. Here, we show the crucial role of the electronic component of polaritons in the magneto-transport of a cavity-embedded 2D electron gas in the ultrastrong coupling regime. We show that the linear dc resistivity is significantly modified by the coupling to the cavity even without external irradiation. Our observations confirm recent predictions of vacuum-induced modification of the resistivity. Furthermore, photo-assisted transport in presence of a weak irradiation field at sub-THz frequencies highlights the different roles of localized and delocalized states.

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  1. Floquet Theory of lattice electrons coupled to an off-resonant cavity

    cond-mat.str-el 2025-07 conditional novelty 6.0 of 10

    An off-resonant cavity mediates electron-electron interactions at first order in 1/omega_c, and for an SSH chain these interactions reshape the topological phase diagram at strong coupling.

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