| Literature DB >> 29749743 |
Lei Wang, Sergey Kruk, Kirill Koshelev1, Ivan Kravchenko2, Barry Luther-Davies, Yuri Kivshar1.
Abstract
Metasurfaces, two-dimensional lattices of nanoscale resonators, offer unique opportunities for functional flat optics and allow the control of the transmission, reflection, and polarization of a wavefront of light. Recently, all-dielectric metasurfaces reached remarkable efficiencies, often matching or out-performing conventional optical elements. The exploitation of the nonlinear optical response of metasurfaces offers a paradigm shift in nonlinear optics, and dielectric nonlinear metasurfaces are expected to enrich subwavelength photonics by enhancing substantially nonlinear response of natural materials combined with the efficient control of the phase of nonlinear waves. Here, we suggest a novel and rather general approach for engineering the wavefront of parametric waves of arbitrary complexity generated by a nonlinear metasurface. We design all-dielectric nonlinear metasurfaces, achieve a highly efficient wavefront control of a third-harmonic field, and demonstrate the generation of nonlinear beams at a designed angle and the generation of nonlinear focusing vortex beams. Our nonlinear metasurfaces produce phase gradients over a full 0-2π phase range with a 92% diffraction efficiency.Keywords: Metasurfaces; Mie resonances; nonlinear optics; third-harmonic generation; wavefront control
Year: 2018 PMID: 29749743 DOI: 10.1021/acs.nanolett.8b01460
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189