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Phase-matching-free sensing with undetected light using a nonlinear thin-film metasurface
Toby Severs Millard1,2, Nathan R Gemmell3, Ross C Schofield4
1Blackett Laboratory, Department of Physics, Imperial College London, London, UK. toby.seversmillard@unimelb.edu.au.
Abstract:
In this article, we report classical sensing with undetected light at a wavelength of 1500 nm, detected on a silicon camera at 580 nm, using four-wave mixing from a plasmonic metasurface. The bidirectional nonlinear scattering due to inherent reflections from such thin nonlinear materials modifies their operation within a nonlinear interferometer. The theoretical model for visibility accounting for bidirectionality as well as pulsed illumination accurately predicts visibility in the system as a function of transmission in the near-infrared seed (idler) arm. Spectrally resolving the visible signal emission evaluates the total dispersion within the interferometer, highlighting the prospect of ultrafast sensing with undetected photons.