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    Exciton-resonant detection of high-frequency surface acoustic waves from subwavelength metal gratings

    Olga Ken1,*, Dmytro Horiachyi1, Ilya Akimov1, Vladimir Korenev1, Vitalyi Gusev2, Leonid Litvin3, Michael Kahl3, Arne Ludwig4, Nikolai Spitzer4 et al.

    Andreas D. Wieck4 and Manfred Bayer1,5

    • *Contact author: olga.ken@tu-dortmund.de

    Phys. Rev. B 113, 075303 – Published 10 February, 2026

    DOI: https://doi.org/10.1103/72ym-hc78

    Abstract

    We report on all-optical generation and detection of high-frequency (up to ∼30 GHz) surface acoustic waves (SAWs) in GaAs/AlGaAs heterostructures with short-period Au gratings on top. A highly sensitive method for SAW detection is demonstrated using a polarization-resolved pump-probe technique that exploits the narrow exciton resonance in high-quality GaAs. The elastic strain of the SAW modulates the exciton energy in the time domain. As a result, even a small deformation produces a noticeable change in the dielectric function at the detection wavelength leading to an order of magnitude increase in the detection sensitivity as compared to off-resonant conditions. A theoretical model is developed that considers two detection schemes: one accounting for probe light diffraction and one corresponding to a nondiffractive situation.

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