A broadband achromatic polarization-insensitive metalens consisting of anisotropic nanostructures
Широкополосная ахроматическая металинза, нечувствительная к поляризации, состоящая из анизотропных наноструктур
2019-01-21
SCID: 54.1/dwxu35c7
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anisotropic TiO2 nanofinsbroadband achromatic metalensdiffraction-limited imagingpolarization-insensitive metasurfacevisible spectrum
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Abstract (AI)
Abstract Metasurfaces have attracted widespread attention due to an increasing demand of compact and wearable optical devices. For many applications, polarization-insensitive metasurfaces are highly desirable, and appear to limit the choice of their constituent elements to isotropic nanostructures. This greatly restricts the number of geometric parameters available in design. Here, we demonstrate a polarization-insensitive metalens using otherwise anisotropic nanofins which offer additional control over the dispersion and phase of the output light. As a result, we can render a metalens achromatic and polarization-insensitive across nearly the entire visible spectrum from wavelength λ = 460 nm to 700 nm, while maintaining diffraction-limited performance. The metalens is comprised of just a single layer of TiO 2 nanofins and has a numerical aperture of 0.2 with a diameter of 26.4 µm. The generality of our polarization-insensitive design allows it to be implemented in a plethora of other metasurface devices with applications ranging from imaging to virtual/augmented reality.
Key Findings
1
Anisotropic nanofins can enable polarization-insensitive metalenses while providing additional geometric control over phase and dispersion.
2
The demonstrated metalens is achromatic and polarization-insensitive across nearly the entire visible spectrum, from 460 nm to 700 nm.
3
The design approach is generalizable to other polarization-insensitive metasurface devices for imaging and virtual or augmented reality.
4
The device consists of a single TiO₂ nanofin layer, with numerical aperture 0.2 and diameter 26.4 µm.
5
The metalens maintains diffraction-limited performance across its operating bandwidth.
Research Object
A single-layer TiO2 metalens composed of anisotropic nanofins
Research Subject
Broadband achromatic and polarization-insensitive focusing with diffraction-limited performance across the visible spectrum (460–700 nm)
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2019-01-21
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