论文标题

使用宽带和可调动态检测器的无光学计算光谱仪

An optics-free computational spectrometer using a broadband and tunable dynamic detector

论文作者

Kong, Ling-Dong, Zhao, Qing-Yuan, Wang, Hui, Guo, Jia-Wei, Lu, Hai-Yang-Bo, Hao, Hao, Guo, Shu-Ya, Tu, Xue-Cou, Zhang, La-Bao, Jia, Xiao-Qing, Kang, Lin, Wu, Xing-Long, Chen, Jian, Wu, Pei-Heng

论文摘要

光谱仪是探索光与物质之间相互作用的中心工具。当前对场地的追求是设计一个光谱仪,而无需波动多重光学器件,以有效地降低硬件的复杂性和物理尺寸。基于计算光谱结果并将宽带响应动态检测器相结合,我们成功地展示了无光学的单端谱仪,该光谱仪将超导纳米线的可调量子效率映射到一个不良条件的矩阵中,以构建可求解的逆数学方程。这样的光谱仪可以实现从660到1900 nm的宽带光谱响应能力。电信的光谱分辨率为6 nm,超过现有红外单光子探测器的能量解决能力。同时,从无光学设置中受益,可以同时实现准确的飞行时间测量。我们已经证明了带有8个光谱通道的光谱激光雷达。这项工作提供了一种简洁的方法,用于构建多功能光谱仪,并为在光谱中应用超导纳米射线探测器铺平了道路。

Optical spectrometers are the central instruments for exploring the interaction between light and matter. The current pursuit of the field is to design a spectrometer without the need for wavelength multiplexing optics to effectively reduce the complexity and physical size of the hardware. Based on computational spectroscopic results and combining a broadband-responsive dynamic detector, we successfully demonstrate an optics-free single-detector spectrometer that maps the tunable quantum efficiency of a superconducting nanowire into an ill-conditioned matrix to build a solvable inverse mathematical equation. Such a spectrometer can realize a broadband spectral responsivity ranging from 660 to 1900 nm. The spectral resolution at the telecom is 6 nm, exceeding the energy resolving capacity of existing infrared single-photon detectors. Meanwhile, benefiting from the optics-free setup, precise time-of-flight measurements can be simultaneously achieved. We have demonstrated a spectral LiDAR with 8 spectral channels. This work provides a concise method for building multifunctional spectrometers and paves the way for applying superconducting nanowire detectors in spectroscopy.

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