Cambridge Graphene Centre, University of Cambridge, Cambridge CB3 0FA, UK.
Department of Engineering, University of Cambridge, Cambridge CB3 0FA, UK.
Science. 2019 Sep 6;365(6457):1017-1020. doi: 10.1126/science.aax8814.
Spectrometers with ever-smaller footprints are sought after for a wide range of applications in which minimized size and weight are paramount, including emerging in situ characterization techniques. We report on an ultracompact microspectrometer design based on a single compositionally engineered nanowire. This platform is independent of the complex optical components or cavities that tend to constrain further miniaturization of current systems. We show that incident spectra can be computationally reconstructed from the different spectral response functions and measured photocurrents along the length of the nanowire. Our devices are capable of accurate, visible-range monochromatic and broadband light reconstruction, as well as spectral imaging from centimeter-scale focal planes down to lensless, single-cell-scale in situ mapping.
超小型光谱仪在各种应用中受到追捧,这些应用对尺寸和重量的要求极为严格,包括新兴的原位特性分析技术。我们报告了一种基于单根成分工程纳米线的超紧凑微光谱仪设计。该平台独立于复杂的光学元件或腔体,这些元件和腔体往往会限制现有系统的进一步小型化。我们表明,可以根据纳米线不同的光谱响应函数和沿长度测量的光电流来计算重建入射光谱。我们的设备能够准确地重建可见光范围内的单色光和宽带光,以及从厘米级焦平面到无透镜、单细胞级原位映射的光谱成像。