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Published on: March 20, 2017
All-optical transmission control via degenerate quadrupole modes in silicon metasurfaces
Abstract:
We demonstrate an all-optical method for transmissivity control in silicon metasurfaces, overcoming the tradeoff between absorption for photothermal heating and scattering intensity. By leveraging interference between dipole and quadrupole modes, we achieve efficient wavelength separation, enabling high absorption at the control wavelength without sacrificing signal transmission. This approach results in a 381% intensity modulation at λS= 473 nm under control light irradiation (λC= 405 nm) at 3.67 mW/μm2. Our method significantly enhances modulation efficiency compared to conventional techniques, paving the way for ultrathin all-optical switches and active wavefront control devices.

