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High-Performance Ultra-Thin Spectrometer Optical Design Based on Coddington’s Equations

机译:基于Codpdington方程的高性能超薄光谱仪光学设计

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摘要

A unique method to design a high-throughput and high-resolution ultrathin Czerny–Turner (UTCT) spectrometer is proposed. This paper reveals an infrequent design process of spectrometers based on Coddington’s equations, which will lead us to develop a high-performance spectrometer from scratch. The spectrometer is composed of cylindrical elements except a planar grating. In the simulation design, spot radius is sub-pixel size, which means that almost all of the energy is collected by the detector. The spectral resolution is 0.4 nm at central wavelength and 0.75 nm at edge wavelength when the width of slit is chosen to be 25 μm and the groove density is 900 lines/mm.
机译:提出了一种设计高通量和高分辨率超薄胫骨旋转仪(UTCT)光谱仪的独特方法。本文揭示了基于Codpdington的方程的光谱仪的不常见设计过程,这将导致我们从头开始开发高性能光谱仪。光谱仪由除了平面光栅之外的圆柱形元件组成。在仿真设计中,点半径是子像素尺寸,这意味着探测器收集几乎所有能量。当狭缝宽度选择为25μm时,光谱分辨率为0.4nm,在边缘波长处处于边缘波长,并且凹槽密度为900线/ mm。

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