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Detector-Only Spectrometer Based on Structurally Colored Silicon Nanowires and a Reconstruction Algorithm

机译:基于结构上色硅纳米线的探测器光谱仪和重建算法

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Spectroscopy is a cornerstone in the field of optics. Conventional spectrometers generally require two elements. The first provides wavelength selectivity, for example, diffraction grating or Michelson interferometer. The second is a detector (or detector array). Many applications would benefit from very small and lightweight spectrometers. This motivates us to investigate what may be regarded as an ultimate level of miniaturization for a spectrometer, in which it consists solely of a detector array. We demonstrate a chip containing 24 pixels, each comprising a silicon nanowire (Si NW) array photodetector formed above a planar photodetector. The NWs are structurally colored, enabling us to engineer the responsivity spectra of all photodetectors in the chip. Each pixel thus combines wavelength selectivity and photodetection functions. We demonstrate the use of our chip to reconstruct the spectrum of an unknown light source impinging upon it. This is achieved by an algorithm that takes as its inputs the measured photocurrents from the pixels and a library of their responsivity spectra.
机译:光谱学是光学领域的基石。常规光谱仪通常需要两个元素。第一提供波长选择性,例如,衍射光栅或迈克森干涉仪。第二个是检测器(或探测器阵列)。许多应用程序将受益于非常小而轻巧的光谱仪。这使我们能够调查可以将其视为光谱仪的最终小型化水平的内容,其中它仅包括探测器阵列。我们展示了包含24个像素的芯片,每个芯片包括形成在平面光电探测器上方的硅纳米线(Si NW)阵列光电探测器。 NWS在结构上彩色,使我们能够在芯片中工程师工程师的响应谱。因此,每个像素组合波长选择性和光电检测功能。我们展示了我们的芯片的使用来重建撞击它的未知光源的光谱。这是通过将测量的光电流从像素和其响应光谱的库输入的算法实现的算法来实现。

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