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Chiral Grayscale Imaging with Plasmonic Metasurfaces of Stepped Nanoapertures

机译:阶梯状纳米孔的等离子体表面的手性灰度成像。

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Optical chiral imaging, as an important tool in chemical and biological analysis, has recently undergone a revolution with the development of chiral metamaterials and metasurfaces. However, the existing chiral imaging approaches based on metamaterials or metasurfaces can only display binary images with 1 bit pixel depth having either black or white pixels. Here, the unique chiral grayscale imaging based on plasmonic metasurfaces of stepped V-shaped nanoapertures is reported with both high circular dichroism and large polarization linearity in transmission. By interlacing two subarrays of chiral nanoaperture enantiomers into one metasurface, two specific linear polarization profiles are independently generated in transmission under different incident handedness, which can then be converted into two distinct intensity profiles for demonstrating spin-controlled grayscale images with 8 bit pixel depth. The proposed chiral grayscale imaging approach with subwavelength spatial resolution and high data density provides a versatile platform for many future applications in image encryption and decryption, dynamic display, advanced chiroptical sensing, and optical information processing.
机译:光学手性成像作为化学和生物学分析的重要工具,最近随着手性超材料和超表面的发展发生了一场革命。但是,现有的基于超材料或超表面的手性成像方法只能显示具有黑色或白色像素的1位像素深度的二进制图像。在此,据报道,基于阶梯状V形纳米孔的等离子子表面的独特手性灰度成像具有高圆二色性和透射中的大偏振线性。通过将手性纳米孔对映体的两个子阵列交织到一个超表面,在不同入射手性下的透射中会独立生成两个特定的线性极化曲线,然后可以将其转换为两个不同的强度曲线,以演示具有8位像素深度的自旋控制灰度图像。所提出的具有亚波长空间分辨率和高数据密度的手性灰度成像方法为将来在图像加密和解密,动态显示,高级脊波传感和光学信息处理中的许多应用提供了一个通用平台。

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