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具有扩展孔径的高通量双编码单像素光谱仪。

High-throughput doubly-encoded single-pixel spectrometer with an extended aperture.

作者信息

Yu Chew Jeremy Xuan, Lim Zi Heng, Qi Yi, Zhou Guangcan, Zhou Guangya

出版信息

Opt Express. 2023 Jul 17;31(15):24768-24784. doi: 10.1364/OE.492382.

Abstract

Infrared devices are increasingly used in industrial, medical, and environmental monitoring applications. Cost-effectiveness, robustness, and portability are characteristics that are highly sought after and they can be enabled by a dispersive spectrometer carrying a single-pixel detector. In this paper, we demonstrate a novel, high-throughput dispersive spectrometer that has its spectral resolution decoupled from its throughput. The proposed spectrometer implements a two-stage Hadamard transform encoding process that allows significantly more light into the system to enhance its signal-to-noise ratio. As a single-pixel detector is used to collect the spectral information, the proposed system can be easily implemented in other desired wavelengths. Furthermore, we develop a method to remove the need for uniform illumination at the entrance aperture by taking into consideration its spatial information during the reconstruction process, thereby increasing the ease of the design of devices required for in situ measurement.

摘要

红外设备在工业、医疗和环境监测应用中越来越多地被使用。成本效益、稳健性和便携性是备受追捧的特性,而搭载单像素探测器的色散光谱仪能够实现这些特性。在本文中,我们展示了一种新型的高通量色散光谱仪,其光谱分辨率与其通量解耦。所提出的光谱仪实现了两级哈达玛变换编码过程,该过程允许更多的光进入系统以提高其信噪比。由于使用单像素探测器来收集光谱信息,所提出的系统可以很容易地在其他所需波长上实现。此外,我们开发了一种方法,通过在重建过程中考虑入口孔径的空间信息来消除对其均匀照明的需求,从而提高原位测量所需设备的设计简易性。

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