Wavevector-Selective Nonlinear Plasmonic Metasurfaces
Journal article, 2017

Electromagnetic metasurfaces with strong nonlinear responses and angular selectivity could offer many new avenues for designing ultrathin optics components. We investigated the optical second harmonic generation from plasmonic metasurfaces composed of aligned gold nanopillars with a pronounced out-of-plane tilt using a flexible nonlinear Fourier microscope. The experimental and computational results demonstrate that these samples function as wavevector-selective nonlinear metasurfaces, that is, the coherent second harmonic signal does not only depend on the polarization and wavelength of the excitation beam, but also of its direction of incidence, in spite of the subwavelength thickness of the active layer. Specifically, we observe that the nonlinear response can vary by almost two orders-of-magnitude when the incidence angle is changed from positive to negative values compared to the surface normal. Further, it is demonstrated that these metasurfaces act as a directional nonlinear mirrors, paving the way for new design of directional meta-mirrors in the nonlinear regime.

nonlinear optical material

second harmonic generation

directionality

Metamaterials

nonlinear plasmonics

Author

Kuang Yu Yang

Swiss Federal Institute of Technology in Lausanne (EPFL)

Ruggero Verre

Chalmers, Physics, Bionanophotonics

Jérémy Butet

Swiss Federal Institute of Technology in Lausanne (EPFL)

Chen Yan

Swiss Federal Institute of Technology in Lausanne (EPFL)

Tomasz Antosiewicz

Chalmers, Physics, Bionanophotonics

Mikael Käll

Chalmers, Physics, Bionanophotonics

Olivier J.F. Martin

Swiss Federal Institute of Technology in Lausanne (EPFL)

Nano Letters

1530-6984 (ISSN) 1530-6992 (eISSN)

Vol. 17 9 5258-5263

Subject Categories

Atom and Molecular Physics and Optics

DOI

10.1021/acs.nanolett.7b01412

More information

Latest update

4/5/2022 1