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    Backscatter communication through disordered media enabled by a programmable leaky cavity

    Clément Ferise1,2, Pierre Granier1, Antton Goïcoechea1, François Sarrazin1, Philippe Besnier1, and Matthieu Davy1,*

    • *Contact author: matthieu.davy@univ-rennes.fr

    Phys. Rev. Applied 25, 054058 – Published 21 May, 2026

    DOI: https://doi.org/10.1103/6581-883l

    Abstract

    Retrieving information through disordered scattering systems remains a major challenge in wireless communication and sensing due to the severe distortion and attenuation caused by multiple scattering. Here, we demonstrate robust focusing through random media using a leaky cavity made programmable by reconfigurable metasurfaces. We show that the leaky cavity leverages backscattering from the disordered medium to enhance the degree of control over the transmitted field. We achieve an enhancement in focused intensity by an order of magnitude compared to that of a horn antenna. We further demonstrate robust communication through the medium using low-power amplitude-modulated signals and finally implement a backscatter communication scheme in which the same cavity illuminates and decodes data from a passive reflectivity-modulating target embedded within the disorder. Our results highlight the potential for reliable communication and sensing in complex environments.

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