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痕量气体掩星探测高光谱成像光谱仪光学系统设计

孔相金 李博 李寒霜 王晓旭 顾国超 蒋雪

中国光学(中英文)2024,Vol.17Issue(3):661-673,13.
中国光学(中英文)2024,Vol.17Issue(3):661-673,13.DOI:10.37188/CO.2023-0153

痕量气体掩星探测高光谱成像光谱仪光学系统设计

Optical system design of hyperspectral imaging spectrometer for trace gas occultation detection

孔相金 1李博 2李寒霜 2王晓旭 2顾国超 2蒋雪2

作者信息

  • 1. 中国科学院长春光学精密机械与物理研究所,吉林长春 130033||中国科学院大学,北京 100049
  • 2. 中国科学院长春光学精密机械与物理研究所,吉林长春 130033
  • 折叠

摘要

Abstract

Trace gases,as important constituents of the atmosphere,play an important role in the ecology of the planet.In order to realize the requirements of wide-band,hyperspectral and all-weather continuous meas-urement,a hyperspectral imaging spectrometer operating in occultation detection mode is designed in this pa-per.The system is a dual-channel structure with a common slit,the UV-visible channel adopts a single con-cave grating,and the infrared channel adopts a structure combining Littrow and immersion grating,which ef-fectively reduces the volume.The software is used to optimize the optical structure,and the optimization res-ults show that the spectrometer operates in the range of 250-952 nm wavelengths,of which the UV-visible channel operates in the wavelength range of 250-675 nm,the spectral resolution is better than 1 nm,the MT-Fs are all higher than 0.58 at a Nyquist frequency of 20 lp/mm,and the RMS values at various wavelengths of the full-field-of-view are all less than 21 μm;the infrared channel operates in the wavelength band of 756-952 nm,the spectral resolution is better than 0.2 nm,the MTF is higher than 0.76 at the Nyquist fre-quency of 20 lp/mm,and the RMS value at each wavelength in the whole field of view is less than 6 μm,all of them meet the design requirements.It can be seen that the hyperspectral imaging spectrometer system can realize the occultation detection of trace gases.

关键词

光学系统设计/掩星探测/痕量气体/高光谱成像光谱仪

Key words

optical system design/occultation detection/trace gas/hyperspectral imaging spectrometer

分类

信息技术与安全科学

引用本文复制引用

孔相金,李博,李寒霜,王晓旭,顾国超,蒋雪..痕量气体掩星探测高光谱成像光谱仪光学系统设计[J].中国光学(中英文),2024,17(3):661-673,13.

基金项目

国家重点研发计划(No.2022YFB3903202) (No.2022YFB3903202)

国家自然科学基金(No.62205330)Supported by National Key Research and Development Program of China(No.2022YFB3903202) (No.62205330)

National Natural Science Foundation of China(No.62205330) (No.62205330)

中国光学(中英文)

OA北大核心CSTPCD

2095-1531

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