Research paperExperimental CharacterizationComputational MultiphysicsTensor-driven geometric phase in nonlinear AlGaAs metasurfacesGiorgio Guercio, Andrea Gerini, Kristina Frizyuk, Martina Morassi et al.arXiv·2026·10.1021/acsphotonics.6c00299·arXiv:2601.18246AbstractDielectric metasurfaces provide a unique platform for efficient harmonic generation and optical wavefront manipulation at the nanoscale. While several approaches are available for performing wavefront shaping, the one exploiting geometric phase streamlines significantly the design and fabrication process. It has been recently shown that, in III-V semiconductor alloys, the rotation of the crystal axes affects the phase and amplitude of second-harmonic generation (SHG) induced by circularly polarized light. Based on this notion, we fabricated and characterized two aluminum gallium arsenide metasurfaces displaying the versatility of the geometric phase design approach through nonlinear beam steering and structured-light generation on the harmonic field.Read more
Fabricated AlGaAs metasurface used to demonstrate nonlinear beam steering via geometric phase control.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Fabricated AlGaAs metasurface used for structured harmonic-light generation.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Single AlGaAs resonator model used in finite-element electromagnetic simulations of SHG versus in-plane rotation angle.3 propertiesSimulated Supercell DftAlGaAsStudied MaterialExpand
Research paperExperimental CharacterizationComputational MultiphysicsTensor-driven geometric phase in nonlinear AlGaAs metasurfacesGiorgio Guercio, Andrea Gerini, Kristina Frizyuk, Martina Morassi et al.arXiv·2026·10.1021/acsphotonics.6c00299·arXiv:2601.18246AbstractDielectric metasurfaces provide a unique platform for efficient harmonic generation and optical wavefront manipulation at the nanoscale. While several approaches are available for performing wavefront shaping, the one exploiting geometric phase streamlines significantly the design and fabrication process. It has been recently shown that, in III-V semiconductor alloys, the rotation of the crystal axes affects the phase and amplitude of second-harmonic generation (SHG) induced by circularly polarized light. Based on this notion, we fabricated and characterized two aluminum gallium arsenide metasurfaces displaying the versatility of the geometric phase design approach through nonlinear beam steering and structured-light generation on the harmonic field.Read more
Fabricated AlGaAs metasurface used to demonstrate nonlinear beam steering via geometric phase control.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Fabricated AlGaAs metasurface used for structured harmonic-light generation.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Single AlGaAs resonator model used in finite-element electromagnetic simulations of SHG versus in-plane rotation angle.3 propertiesSimulated Supercell DftAlGaAsStudied MaterialExpand
Research paperExperimental CharacterizationComputational MultiphysicsTensor-driven geometric phase in nonlinear AlGaAs metasurfacesGiorgio Guercio, Andrea Gerini, Kristina Frizyuk, Martina Morassi et al.arXiv·2026·10.1021/acsphotonics.6c00299·arXiv:2601.18246AbstractDielectric metasurfaces provide a unique platform for efficient harmonic generation and optical wavefront manipulation at the nanoscale. While several approaches are available for performing wavefront shaping, the one exploiting geometric phase streamlines significantly the design and fabrication process. It has been recently shown that, in III-V semiconductor alloys, the rotation of the crystal axes affects the phase and amplitude of second-harmonic generation (SHG) induced by circularly polarized light. Based on this notion, we fabricated and characterized two aluminum gallium arsenide metasurfaces displaying the versatility of the geometric phase design approach through nonlinear beam steering and structured-light generation on the harmonic field.Read more
Fabricated AlGaAs metasurface used to demonstrate nonlinear beam steering via geometric phase control.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Fabricated AlGaAs metasurface used for structured harmonic-light generation.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Single AlGaAs resonator model used in finite-element electromagnetic simulations of SHG versus in-plane rotation angle.3 propertiesSimulated Supercell DftAlGaAsStudied MaterialExpand
Research paperExperimental CharacterizationComputational MultiphysicsTensor-driven geometric phase in nonlinear AlGaAs metasurfacesGiorgio Guercio, Andrea Gerini, Kristina Frizyuk, Martina Morassi et al.arXiv·2026·10.1021/acsphotonics.6c00299·arXiv:2601.18246AbstractDielectric metasurfaces provide a unique platform for efficient harmonic generation and optical wavefront manipulation at the nanoscale. While several approaches are available for performing wavefront shaping, the one exploiting geometric phase streamlines significantly the design and fabrication process. It has been recently shown that, in III-V semiconductor alloys, the rotation of the crystal axes affects the phase and amplitude of second-harmonic generation (SHG) induced by circularly polarized light. Based on this notion, we fabricated and characterized two aluminum gallium arsenide metasurfaces displaying the versatility of the geometric phase design approach through nonlinear beam steering and structured-light generation on the harmonic field.Read more
Fabricated AlGaAs metasurface used to demonstrate nonlinear beam steering via geometric phase control.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Fabricated AlGaAs metasurface used for structured harmonic-light generation.1 characterization1 property1 figureExperimentalAlGaAsStudied MaterialExpand
Single AlGaAs resonator model used in finite-element electromagnetic simulations of SHG versus in-plane rotation angle.3 propertiesSimulated Supercell DftAlGaAsStudied MaterialExpand