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Dual-Functional Optical Waveplates Based on Gap-Surface Plasmon Metasurfaces

机译:基于间隙表面等离子体元件的双功能光波

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Gap-surface plasmon (GSP) metasurfaces have attracted increasing attention and have become an emerging research area due to their planar configurations, high efficiencies, ease of fabrication, and unprecedented capabilities in manipulating reflected fields, thereby allowing one to reduce a set of bulky optical components to a single ultrathin element with multiplexed functionalities. Herein, a reflective dual-functional optical waveplate based on periodic GSP meta-molecules is designed and experimentally demonstrated, exhibiting combined quarter-waveplate and half-waveplate functionalities, i.e., providing linear-to-circular and linear-to-linear polarization conversion simultaneously, at the same operating wavelength for orthogonal linear polarizations. The proof-of-concept fabricated metasurface demonstrates excellent and distinct polarization conversion functionalities with the efficiencies of approximate to 73% and 30% at the design wavelength of 850 nm for the orthogonal incident polarizations, well in agreement with the simulations. Owing to the compactness and excellent performance, the demonstrated reflective dual-functional optical waveplate opens yet another avenue for further development of flat polarization optical components with multiplexed functionalities.
机译:差距表面等离子体(GSP)元措施引起了越来越多的关注,并且由于它们的平面配置,高效率,制造和在操纵反射场中的前所未有的能力而成为新兴的研究领域,从而允许一个人减少一组庞大的光学具有多路复用功能的单个超薄元素的组分。这里,基于周期性GSP元分子的反射双功能光学波片设计和实验证明,表现出组合的四分之一波片和半波形官能团,即,同时提供线性到圆形和线性到线性极化转换,在相同的正交线性偏振的工作波长处。概念证据制造的元表面表现出优异的和不同的偏振转换功能,其效率在850nm的设计波长对于正交入射偏振的设计波长,符合模拟时的效率。由于具有紧凑性和优异的性能,所示的反射双功能光学波片又为另一个具有多路复用功能开发的扁平偏振光学组件进一步开发。

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