All-optical polarization control and routing by nonlinear interferometry at the nanoscale
Yigong Luan, Attilio Zilli, Agostino Di Francescantonio, Vincent, Vinel, Paolo Biagioni, Lamberto Du\`o, Aristide Lema\^itre, Giuseppe Leo,, Michele Celebrano, Marco Finazzi

TL;DR
This paper demonstrates ultrafast all-optical polarization control using nonlinear interferometry on dielectric metasurfaces, enabling dynamic polarization modulation and routing of light at the nanoscale for advanced photonic applications.
Contribution
It introduces a novel method for polarization modulation via nonlinear interferometry on dielectric metasurfaces, achieving dynamic control over light polarization states and routing in the Fourier space.
Findings
Achieved up to 83% degree of circular polarization in emitted light.
Demonstrated polarization switching by phase toggling of π.
Enabled polarization-based optical routing in the k-space.
Abstract
Optical metasurfaces are rapidly establishing as key-enabling platforms for nanophotonics applications. Along with the ability of taming light in subwavelength thicknesses, they can feature multiple functionalities in one device. The generation and control of light polarization by metasurfaces already provided a route towards ultracompact polarimetry devices in the linear regime. If translated to the nonlinear optical regime it may become a key-enabling tool in nonlinear imaging, optical holography and sensing. Here, we report the experimental ultrafast all-optical polarization modulation of upconverted light by all-dielectric metasurfaces via nonlinear interferometry. By controlling the relative phase between a pump beam at and its frequency-double replica at 2, we can set the phase relation between two frequency-degenerate upconverted processes at 3 …
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Taxonomy
TopicsPhotonic and Optical Devices · Advanced Fiber Laser Technologies · Nonlinear Optical Materials Studies
