We show that a metasurface-coated two-dimensional (2D) slab waveguide enables the generation of arbitrary complex light fields by combining the extreme versatility and freedom on wavefront control of optical metasurfaces with the compactness of photonic integrated circuits. We demonstrated off-chip 2D focusing and holographic projection with our metasurface-dressed photonic integrated devices. This technology holds the potential for many other optical applications requiring 2D light field manipulation with full on-chip integration, such as solid-state LiDAR and near-eye AR/VR displays
Metasurfaces with unparalleled controllability of light have shown great potential to revolutionize ...
In integrated circuits, an important prerequisite for success is that every transistor can be driven...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metamaterials, or engineered materials with rationally designed, subwavelength-scale building blocks...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
The emerging applications of silicon photonics in free space, such as LiDARs and quantum photonics, ...
Holographic display, one of the most realistic ways to reconstruct optical images in three-dimension...
Here, we present metasurface-incorporated waveguides that synergize subwavelength metaphotonic archi...
Augmented reality (AR) devices, as smart glasses, enable users to see both the real world and virtua...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
Metasurfaces have been rapidly advancing our command over the many degrees of freedom of light withi...
The field of metasurfaces is revolutionizing the way we control and manipulate light and electromagn...
Holography has emerged as a vital approach to fully engineer the wavefronts of light since its inven...
Metasurfaces with unparalleled controllability of light have shown great potential to revolutionize ...
In integrated circuits, an important prerequisite for success is that every transistor can be driven...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...
We numerically demonstrate wavefront manipulation in silicon metasurfaces driven by input light from...
Metamaterials, or engineered materials with rationally designed, subwavelength-scale building blocks...
Integration of metasurfaces and SOI (silicon-on-insulator) chips can leverage the advantages of both...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
The emerging applications of silicon photonics in free space, such as LiDARs and quantum photonics, ...
Holographic display, one of the most realistic ways to reconstruct optical images in three-dimension...
Here, we present metasurface-incorporated waveguides that synergize subwavelength metaphotonic archi...
Augmented reality (AR) devices, as smart glasses, enable users to see both the real world and virtua...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
Metasurfaces have been rapidly advancing our command over the many degrees of freedom of light withi...
The field of metasurfaces is revolutionizing the way we control and manipulate light and electromagn...
Holography has emerged as a vital approach to fully engineer the wavefronts of light since its inven...
Metasurfaces with unparalleled controllability of light have shown great potential to revolutionize ...
In integrated circuits, an important prerequisite for success is that every transistor can be driven...
In classical optics, optical components such as lenses and microscopes are unable to focus the light...