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Signal-to-noise ratio of the spatially modulated imaging spectrometer based on modified Sagnac interferometer

机译:基于改进的Sagnac干涉仪的空间调制成像光谱仪的信噪比

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摘要

The basic principle of the spatially modulated imaging spectrometer, based on modified Sagnac interferometer, is outlined. According to radiometry, electromagnetism and Fourier transform spectroscopy, the radiation flux received by each pixel of the detector is calculated, and then the exact expression of the signal-to-noise ratio (SNR), at a distance x away from the zero-order fringe, is given. To analyze and discuss the effects of various parameters on SNR, the computer simulation is carried out, and some important conclusions are obtained. Using the root mean square method, the SNR variations of the whole optical system, changing with Sagnac interferometer acute angles β_1 and β_2, are simulated, and the condition β_1 = β_2 can make the system SNR higher and more stable. This work can provide theoretical basis and practical guidance for improving the spatially modulated imaging spectrometer's SNR together with its engineering realization.
机译:概述了基于改进的Sagnac干涉仪的空间调制成像光谱仪的基本原理。根据辐射测量,电磁学和傅立叶变换光谱,计算探测器每个像素接收的辐射通量,然后在距零阶距离x处精确表示信噪比(SNR)。条纹,被给予。为了分析和讨论各种参数对信噪比的影响,进行了计算机仿真,并得出了一些重要的结论。使用均方根方法,模拟了整个光学系统的信噪比变化,随Sagnac干涉仪锐角β_1和β_2的变化而变化,条件β_1=β_2可使系统的信噪比更高,更稳定。这项工作可以为改进空间调制成像光谱仪的信噪比及其工程实现提供理论依据和实践指导。

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