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High-efficiency dielectric metasurfaces for simultaneously engineering polarization and wavefront

机译:用于同时工程极化和波前的高效电介质元件

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Emerging metasurfaces are capable of arbitrarily reshaping the incident light, including polarization and wavefront, thereby enabling highly compact optical devices, such as meta-deflectors, meta-waveplates, and meta-lenses. However, the miniaturization of metasurface-enabled integrated devices still suffers from bulky dimensions and propagation loss. In this work, based on crystalline silicon, we report a novel approach of high-efficiency metasurfaces for simultaneously manipulating the polarization and wavefront of incident light at the telecommunication wavelength, from which an arbitrary spatial field distribution of the polarization direction and wavefront can be achieved. For verification, four proof-of-concept dual-functional metasurfaces are numerically designed with high efficiency of more than 70%, including quarter-waveplate/deflector, half-waveplate/deflector, lens/quarter-waveplate, and lens/half-waveplate. Such compact dual-functional metasurfaces offer a new pathway for the future miniaturization of integrated optical devices.
机译:新出现的元素能够任意地重塑入射光,包括偏振和波前,从而实现高度紧凑的光学装置,例如元偏转器,元波,元镜头。然而,使能器表面的集成设备的小型化仍然存在庞大的尺寸和传播损耗。在这项工作中,基于晶体硅,我们报告了一种新的高效元件的方法,用于同时操纵电信波长在电信波长处的入射光的极化和波前,从中可以实现偏振方向和波前的任意空间场分布。对于验证,四种概念验证双功能性质元件具有高效率,高于70%以上,包括四分之一波片/偏转器,半波片/偏转器,镜头/四分之一波片以及镜头/半波片。这种紧凑的双功能元件为未来集成光学器件的未来小型化提供了新的途径。

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