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Color filter arrays based on dielectric metasurface elements

机译:基于介质元表面元素的滤色器阵列

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Digital imaging has been steadily improving over the past decades and we are moving towards a wide use of multi- and hyperspectral cameras. A key component of such imaging systems are color filter arrays, which define the spectrum of light detected by each camera pixel. Hence, it is essential to develop a variable, robust and scalable way for controlling the transmission of light. Nanostructured surfaces, also known as metasurfaces, offer a promising solution as their transmission spectra can be controlled by shaping the wavelength-dependent scattering properties of their constituting elements. Here we present, metasurfaces based on silicon nanodisks, which provide filter functions with amplitudes reaching 70-90% of transmission, and well suitable for RGB and CMY color filter arrays, the initial stage towards the further development of hyperspectral filters. We suggest and discuss possible ways to expand the color gamut and improve the color values of such optical filters.
机译:在过去的几十年中,数字成像一直在稳步改善,我们正在朝着广泛使用多和高光谱相机。这种成像系统的关键组件是滤色器阵列,其定义由每个相机像素检测的光的光谱。因此,必须开发一种用于控制光的传输的可变,鲁棒和可伸缩的方式。纳米结构表面,也称为元件,提供有希望的解决方案,因为它们的透射光谱可以通过成形其构成元件的波长依赖性散射特性来控制。在这里,我们存在基于硅纳多克的MEDasurface,其提供具有幅度的滤波器功能,达到70-90%的变速器,并且适用于RGB和CMY滤光器阵列,初始阶段朝着高光谱滤波器进一步发展的初始阶段。我们建议并讨论扩展色域的可能方法,并改善这种光学滤波器的颜色值。

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