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Multiply-resonant Second-harmonic Generation using Surface Lattice Resonances in Aluminum Metasurfaces

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arxiv 2106.14504 v1 pith:OZIMVUJ2 submitted 2021-06-28 physics.optics

classification physics.optics
keywords nonlinearmetasurfacesaluminumresonancessecond-harmonicarraysgenerationlattice
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Nonlinear metamaterials show potential for realizing flat nonlinear optical devices but generally lack in terms of achievable conversion efficiencies. Recent work has focused on enhancing nonlinear processes by utilizing high quality factor resonances, such as collective responses known as surface lattice resonances (SLRs) taking place in periodic metal nanoparticle arrays. Here, we investigate how the dispersive nature of SLRs affects the nonlinear responses of SLR-supporting metasurfaces. Particularly, we measure second-harmonic generation from aluminum nanoparticle arrays and demonstrate that by tilting the sample along two orthogonal directions, the sample can be made multiply-resonant for several pump and second-harmonic signal wavelength combinations. Characterized metasurfaces are estimated to exhibit a second-order susceptibility value of 0.40 pm/V, demonstrating aluminum as a potential material for nonlinear metasurfaces.

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