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All-dielectric Single-layered Achiral Structures for Simultaneous Conversion Circular Dichroism and Wavefront Engineering for Visible Light

机译:用于可见光同时转换圆形二色性和波前工程的全介电单层结构

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The simultaneous conversion circular dichroism and wavefront shaping play a vital role in light-matter interactions. The conversion circular dichroism achieved either by intrinsic chirality of nano-antennas or by using multilayer structures which have fabrication complexities. We propose a unique single-layered all-dielectric metasurface for circular asymmetric transmission in the visible regime. We introduce the combination of achiral structures as the building block of metasurface for the simultaneous conversion circular dichroism and wavefront modulation by utilizing hydrogenated amorphous silicon (a-Si:H). The proposed material is a low-loss and a CMOS compatible solution for realizing efficient all-dielectric metasurfaces for the visible domain. The demonstrated methodology exhibits highly efficient transmittance under right circularly polarized (RCP) illumination while completely blocking the light for the opposite spin of the incident light. The multifunctionality of the proposed metasurface can provide a promising route for chiral imaging, CD spectroscopy and spin-selective optical systems.
机译:同时转换圆形二色性和波前塑造在淡出淡出的相互作用中起着至关重要的作用。通过纳米天线的内在手感或使用具有制造复杂性的多层结构来实现的转换圆形二中间态。我们提出了一种独特的单层全电介质元表面,用于可见制度中的圆形不对称传输。我们通过利用氢化非晶硅(A-Si:H)来介绍成像结构作为Metasurface和波前调节的构建块的组合。所提出的材料是一种低损耗和CMOS兼容解决方案,用于实现可见域的有效的全电介质元件。所示的方法在右圆极化(RCP)照明下表现出高效的透射率,同时完全阻挡了入射光的相对旋转的光。所提出的元表面的多功能性可以为手性成像,CD光谱和自旋选择性光学系统提供有希望的路线。

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