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Visible-Frequency Dielectric Metasurfaces for Multiwavelength Achromatic and Highly Dispersive Holograms

机译:多波长消色差和高色散全息图的可见频介电超表面

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Dielectric metasurfaces built up with nanostructures of high refractive index represent a powerful platform for highly efficient flat optical devices due to their easy-tuning electromagnetic scattering properties and relatively high transmission efficiencies. Here we show visible-frequency silicon metasurfaces formed by three kinds of nanoblocks multiplexed in a subwavelength unit to constitute a metamolecule, which are capable of wavefront manipulation for red, green, and blue light simultaneously. Full phase control is achieved for each wavelength by independently changing the in-plane orientations of the corresponding nanoblocks to induce the required geometric phases. Achromatic and highly dispersive meta-holograms are fabricated to demonstrate the wavefront manipulation with high resolution. This technique could be viable for various practical holographic applications and flat achromatic devices.
机译:由高折射率的纳米结构构成的介电超表面由于其易调节的电磁散射特性和相对较高的传输效率而成为高效平板光学设备的强大平台。在这里,我们显示了由三种纳米块以亚波长单位多路复用以构成一个大分子而形成的可见频率硅超表面,这些超分子能够同时对红,绿和蓝光进行波前操纵。通过独立地更改相应纳米块的面内取向以诱导所需的几何相位,可以为每个波长实现完全相位控制。制作了消色差和高度分散的亚全息图,以演示高分辨率的波前操纵。该技术对于各种实际的全息应用和平面消色差装置可能是可行的。

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