Metasurfaces have facilitated the replacement of conventional optical elements with ultrathin and planar photonic structures. Previous designs of metasurfaces were limited to small deflection angles and small ranges of the angle of incidence. Here, we have created two types of Si-based metasurfaces to steer visible light to a large deflection angle. These structures exhibit high diffraction efficiencies over a broad range of angles of incidence. We have demonstrated metasurfaces working both in transmission and reflection modes based on conventional thin film silicon processes that are suitable for the large-scale fabrication of high-performance devices
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Thesis (Ph.D.)--University of Washington, 2019In recent years, sub-wavelength, aperiodic gratings, c...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metasurfaces have shown many interesting physical phenomena by designing the subwavelength antennas ...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Dielectric metasurfaces require high refractive index contrast materials for optimum performance. Th...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
Dielectric metasurfaces are capable of completely manipulating the phase, amplitude, and polarizatio...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Metamaterials are artificially structured composites. They can be used to modulate electromagnetic w...
Dielectric metasurfaces have significant potential for delivering miniaturized optical systems with ...
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Thesis (Ph.D.)--University of Washington, 2019In recent years, sub-wavelength, aperiodic gratings, c...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metasurfaces have shown many interesting physical phenomena by designing the subwavelength antennas ...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Dielectric metasurfaces require high refractive index contrast materials for optimum performance. Th...
In the past few decades, the advancements in nanotechnology have significantly altered many fields o...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
Dielectric metasurfaces are capable of completely manipulating the phase, amplitude, and polarizatio...
Optical metasurfaces are ultra-thin planar optical components that are composed of arrays of subwave...
Metamaterials are artificially structured composites. They can be used to modulate electromagnetic w...
Dielectric metasurfaces have significant potential for delivering miniaturized optical systems with ...
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Metasurfaces, or phase-engineered quasi-2D interfaces, enable a large degree of control over the ref...
Thesis (Ph.D.)--University of Washington, 2019In recent years, sub-wavelength, aperiodic gratings, c...