Research paperComputational MultiscaleTheoreticalComputed PLHybrid–2D Excitonic Metasurfaces for Complex Amplitude ModulationTom Hoekstra, Mark L. Brongersma, Jorik van de Groep2026·arXiv:2604.07619AbstractDynamic control of visible light is crucial for technologies such as holographic displays and adaptive optics. Passive metasurfaces can shape wavefronts at the subwavelength scale and active metasurfaces promise to extend this functionality into the temporal domain. However, existing metasurfaces for dynamic phase manipulation typically cannot deliver phase modulation across a broad range without causing variations in the scattering amplitude. Here, we use an inverse-design pipeline to numerically demonstrate a hybrid-2D excitonic metasurface platform offering independent amplitude and phase control in the visible regime. Harnessing the gate-tunable excitonic response of monolayer WS₂ retrieved from experiments, we design a π-phase modulator with a uniform amplitude profile. Adding a second tunable monolayer, we achieve independent control of the amplitude and phase over the full 0–2π phase range, which we leverage for a reconfigurable beam-steering metadevice. Our results demonstrate how hybrid-2D excitonic metasurfaces enable electrically tunable wavefront shaping in the visible regime.Read more
Single-gate hybrid-2D metasurface phase-modulator architecture with monolayer WS₂ encapsulated by hBN, graphene gate electrode, and Ag back-reflector.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Double-gated hybrid-2D metasurface with two independently addressable WS₂ monolayers for 0–2π phase coverage.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Three-level programmable beam-steering metasurface based on the double-gated hybrid-2D platform, with segmented WS₂ strips in a supercell.7 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Research paperComputational MultiscaleTheoreticalComputed PLHybrid–2D Excitonic Metasurfaces for Complex Amplitude ModulationTom Hoekstra, Mark L. Brongersma, Jorik van de Groep2026·arXiv:2604.07619AbstractDynamic control of visible light is crucial for technologies such as holographic displays and adaptive optics. Passive metasurfaces can shape wavefronts at the subwavelength scale and active metasurfaces promise to extend this functionality into the temporal domain. However, existing metasurfaces for dynamic phase manipulation typically cannot deliver phase modulation across a broad range without causing variations in the scattering amplitude. Here, we use an inverse-design pipeline to numerically demonstrate a hybrid-2D excitonic metasurface platform offering independent amplitude and phase control in the visible regime. Harnessing the gate-tunable excitonic response of monolayer WS₂ retrieved from experiments, we design a π-phase modulator with a uniform amplitude profile. Adding a second tunable monolayer, we achieve independent control of the amplitude and phase over the full 0–2π phase range, which we leverage for a reconfigurable beam-steering metadevice. Our results demonstrate how hybrid-2D excitonic metasurfaces enable electrically tunable wavefront shaping in the visible regime.Read more
Single-gate hybrid-2D metasurface phase-modulator architecture with monolayer WS₂ encapsulated by hBN, graphene gate electrode, and Ag back-reflector.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Double-gated hybrid-2D metasurface with two independently addressable WS₂ monolayers for 0–2π phase coverage.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Three-level programmable beam-steering metasurface based on the double-gated hybrid-2D platform, with segmented WS₂ strips in a supercell.7 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Research paperComputational MultiscaleTheoreticalComputed PLHybrid–2D Excitonic Metasurfaces for Complex Amplitude ModulationTom Hoekstra, Mark L. Brongersma, Jorik van de Groep2026·arXiv:2604.07619AbstractDynamic control of visible light is crucial for technologies such as holographic displays and adaptive optics. Passive metasurfaces can shape wavefronts at the subwavelength scale and active metasurfaces promise to extend this functionality into the temporal domain. However, existing metasurfaces for dynamic phase manipulation typically cannot deliver phase modulation across a broad range without causing variations in the scattering amplitude. Here, we use an inverse-design pipeline to numerically demonstrate a hybrid-2D excitonic metasurface platform offering independent amplitude and phase control in the visible regime. Harnessing the gate-tunable excitonic response of monolayer WS₂ retrieved from experiments, we design a π-phase modulator with a uniform amplitude profile. Adding a second tunable monolayer, we achieve independent control of the amplitude and phase over the full 0–2π phase range, which we leverage for a reconfigurable beam-steering metadevice. Our results demonstrate how hybrid-2D excitonic metasurfaces enable electrically tunable wavefront shaping in the visible regime.Read more
Single-gate hybrid-2D metasurface phase-modulator architecture with monolayer WS₂ encapsulated by hBN, graphene gate electrode, and Ag back-reflector.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Double-gated hybrid-2D metasurface with two independently addressable WS₂ monolayers for 0–2π phase coverage.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Three-level programmable beam-steering metasurface based on the double-gated hybrid-2D platform, with segmented WS₂ strips in a supercell.7 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Research paperComputational MultiscaleTheoreticalComputed PLHybrid–2D Excitonic Metasurfaces for Complex Amplitude ModulationTom Hoekstra, Mark L. Brongersma, Jorik van de Groep2026·arXiv:2604.07619AbstractDynamic control of visible light is crucial for technologies such as holographic displays and adaptive optics. Passive metasurfaces can shape wavefronts at the subwavelength scale and active metasurfaces promise to extend this functionality into the temporal domain. However, existing metasurfaces for dynamic phase manipulation typically cannot deliver phase modulation across a broad range without causing variations in the scattering amplitude. Here, we use an inverse-design pipeline to numerically demonstrate a hybrid-2D excitonic metasurface platform offering independent amplitude and phase control in the visible regime. Harnessing the gate-tunable excitonic response of monolayer WS₂ retrieved from experiments, we design a π-phase modulator with a uniform amplitude profile. Adding a second tunable monolayer, we achieve independent control of the amplitude and phase over the full 0–2π phase range, which we leverage for a reconfigurable beam-steering metadevice. Our results demonstrate how hybrid-2D excitonic metasurfaces enable electrically tunable wavefront shaping in the visible regime.Read more
Single-gate hybrid-2D metasurface phase-modulator architecture with monolayer WS₂ encapsulated by hBN, graphene gate electrode, and Ag back-reflector.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Double-gated hybrid-2D metasurface with two independently addressable WS₂ monolayers for 0–2π phase coverage.3 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand
Three-level programmable beam-steering metasurface based on the double-gated hybrid-2D platform, with segmented WS₂ strips in a supercell.7 propertiesSimulated Supercell DftWS₂Studied MaterialBNSubstrate / DielectricCCapping Or ContactAgSubstrate / DielectricExpand