首页|基于类Offner分光成像组件的水色成像光谱仪设计

基于类Offner分光成像组件的水色成像光谱仪设计

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为了观察海洋海岸带的环境变化,区分海洋中各种有机物和无机物,设计一款用于海洋水色探测的宽幅、高分辨率成像光谱仪光学系统。该成像光谱仪工作波段为0。4~0。9 μm,由前置物镜和放大倍率为0。6的类Offner分光成像组件组成。首先分析水色成像光谱仪的指标要求,然后推导类Offner分光成像组件的初始结构参数,接着完成前置物镜和分光成像组件的设计。前置物镜采用离轴三反结构,F数为5,焦距为590。75 mm;分光成像组件像方F数为3,主镜和三镜采用Zernike自由曲面,光栅为凸球面光栅。由设计结果可知,各视场处的点列图均方根半径小于3。74 μm,奈奎斯特频率处的调制传递函数大于0。8,成像质量好。该工作可为宽幅、高分辨率水色探测成像光谱仪的设计和研制提供技术基础。
Optical Design of Ocean Color Imaging Spectrometer Based on Offner-Like Configuration
Objective The ocean,covering 71%of the Earth's surface,serves as the cradle of life and a repository of resources.The development and utilization of ocean resources have significantly altered the ocean environment,which adversely affects the sustainable development.Ocean color,determined by the optical properties of the seawater and the suspended matter,reflects changes in seawater quality and the ocean environment.The imaging spectrometer,integrating optical imaging and spectroscopic technology,is a primary tool for ocean color monitoring.It can not only monitor the coastal environment and the distribution of the elements in the ocean but also can distinguish the composition effectively.With the increasing ocean color application and the urgent requirement of ocean studies,the imaging spectrometer optical system with wide swath and high resolution has important research significance and application value.Methods To address the ocean color monitoring requirements,we propose and design an optical system of an imaging spectrometer with a wide swath and high resolution.The system operates within a waveband of 0.4-0.9 μm and features a swath width of 140 km,a ground sampling distance of 20 m,and a spectral resolution of 5 nm.The imaging spectrometer is composed of the fore-optics and spectral imaging module.The fore-optics is an off-axis three mirror anastigmat(TMA)system.The spectral imaging module is designed with a unique Offner-like configuration instead of the common Offner configuration.This configuration has similar optical components but with a non-unit magnification.The parameters requirement of the ocean color imaging spectrometer is analyzed and the optical specifications are given out first.Then,the initial structural parameters of the Offner-like configuration calculation method are introduced.Using these calculated parameters,we design and evaluate the optical system for the fore-optics and spectral imaging module.Finally,we compare the optical design results using the conventional Offner configuration,detailing imaging performance characteristics,system sizes,and surface sags to demonstrate the advantages of the proposed system.Results and Discussions In our study,the magnification of the Offner-like configuration is set to be 0.6.At this magnification,the focal length of the fore-optics is 590.75 mm,with an F# of 5.The fore-optics is designed and optimized with even aspherical surfaces.After optimization,the modulation transfer function(MTF)exceeds 0.8 at the Nyquist frequency,and the maximum root mean square(RMS)radius of the spot diagram is less than 2.63 μm(Fig.4).Given the selected magnification,the image space F# of the spectral imaging module is 3,and the total slit length of is 198.33 mm.Two identical spectral imaging modules,each with a slit length of 99.66mm,are used to achieve the required long slit length.Compared to the traditional Offner configuration,this Offner-like configuration,which still includes a convex spherical surface grating and two mirrors(Fig.5),offers three advantages compared with the common Offner configuration.First,the magnification is not 1 and can be used as the optimization variable in the optical design.Second,the object and image space F# of the spectral imaging module are no longer equal,and it is possible to reduce the difficulty in designing,manufacturing,and assembling the fore-optics when the selected magnification is less than 1.Third,the incident arm of the spectral imaging module is longer when the magnification is less than 1,and the system size of the imaging spectrometer can be compressed by adding the folding mirror.To enhance imaging performance and reduce the system size,the Zernike freeform surface primary mirror and the tertiary mirror are used.The MTF of the designed spectral imaging module at the Nyquist frequency is larger than 0.8 and the maximum RMS radius of the spot diagram is less than 3.13 μm(Fig.6).The maximum smile and keystone are about 1.5 μm,which is less than 10%of the pixel size(Table 3).Conclusions Our paper presents the design and optimization of an ocean color imaging spectrometer with a wide swath and high resolution,utilizing a unique Offner-like configuration.The dispersion element remains a convex spherical grating,while the spectral imaging module features a non-unit magnification.Compared with the common Offner configuration,the proposed optical system delivers superior imaging quality,reduced size,and enhanced system performance.Our work provides a technical foundation for the development of a wide swath,high-resolution imaging spectrometer for ocean color detection.

optical designOffner configurationZernike freeform surfaceocean color detection

宋玲玲、陈新华、潘俏、沈为民

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苏州大学光电科学与工程学院,江苏苏州 215006

江苏省先进光学制造技术重点实验室,江苏苏州 215006

教育部现代光学技术重点实验室,江苏苏州 215006

光学设计 Offner分光成像组件 Zernike自由曲面 水色探测

2024

光学学报
中国光学学会 中国科学院上海光学精密机械研究所

光学学报

CSTPCD北大核心
影响因子:1.931
ISSN:0253-2239
年,卷(期):2024.44(24)