帮助 关于我们

返回检索结果

紧凑型空间外差成像光谱仪设计
Design of Compact Spatial Heterodyne Imaging Spectrometer

查看参考文献16篇

尹诗 1,2   冯玉涛 1 *   白清兰 1   孙晨 1,2   张亚飞 1,2  
文摘 设计了一种适合微小卫星平台应用的紧凑型空间外差成像光谱仪,该系统利用两套干涉结构将干涉条纹定域于系统外部,并将前置透镜的成像面与系统干涉面重合以获取目标的空间位置信息和光谱信息.根据系统轴上光表达式和奈奎斯特采样定律,给出了系统光谱分辨率和光谱范围与元件参数的匹配关系.通过光线追迹的方式,理论证明了干涉图定域位置,并推导了普适仪器函数表达式.针对氧原子气辉(O[1 D]630 nm)星载测量,完成了该紧凑型空间外差成像光谱仪的系统设计和仿真,系统光谱采样间隔为0.762 3 cm~(-1),光谱范围为601.674 9~631.324 6 nm.最后通过搭建实验装置获取632.8 nm激光光源的目标图像和复原光谱.仿真和实验结果表明:系统光谱采样间隔达到设计要求,且光谱分辨能力为20 822(@630 nm);λ/4波长和线偏振器的装调误差(±1°)对系统干涉图调制度影响很小.该系统具有成像能力和光谱探测能力,可作为一种时空联合型干涉光谱仪使用.
其他语种文摘 A compact spatial heterodyne imaging spectrometer suitable for micro satellite platforms is designed.Two sets of interference structures are used to make the fringes localized outside the system. The imaging plane of front lens system and fringe localization of system are overlapped so that the spatial location information and the spectral information of target are obtained.According to the expression of axis optical field and Nyquist sampling theorem,the relationship between spectral resolution and spectral range and some critical parameters is given.Through the way of ray tracing,the theoretical proof of fringe localization is described in detail,and the universal function expression of instrument is derived. This compact spatial heterodyne imaging spectrometer for observation of O[~1 D]630 nm airglow from satellite is designed and simulated.The spectral sampling interval of the system is 0.762 3 cm-1 and the spectral range is 601.674 9~631.324 6 nm.Finally,a compact spatial heterodyne imaging spectrometer is built to verify the results.And the target image and recovery spectrum of the 632.8 nm laser source is obtained.The simulation and experimental results show that spectral sampling interval of the system achieve the design requirements,and the spectral is 20 822 at 630 nm.The alignment error(±1°)of quarter-wave plate and polarizer has little influence on the modulation of fringes.It shows that the system has the imaging capabilities and spectral detectability,and can be used as a spatiotemporal mixed modulated spectrometer.
来源 光子学报 ,2018,47(3):0312002-1-0312002-9 【核心库】
DOI 10.3788/gzxb20184703.0312002
关键词 光谱学 ; 空间外差 ; 光学设计 ; 成像光谱仪 ; 气辉
地址

1. 中国科学院西安光学精密机械研究所, 西安, 710119  

2. 中国科学院大学, 北京, 100049

语种 中文
文献类型 研究性论文
ISSN 1004-4213
学科 物理学
基金 国家自然科学基金 ;  西部青年学者
文献收藏号 CSCD:6193518

参考文献 共 16 共1页

1.  Harlander J. Spatial heterodyne spectroscopy for high spectral resolution on space-based remote sensing. Optics & Photonics News,2004,15(1):46-51 CSCD被引 4    
2.  Mierkiewicza E J. First light performance of a near UV spatial heterodyne spectrometer for interstellar emission line studies. SPIE. 5492,2004:751-766 CSCD被引 1    
3.  Watchorn S. Development of the spatial heterodyne spectrometer for VUV remote sensing of the interstellar medium. SPIE. 4498,2001:284-295 CSCD被引 3    
4.  Harlander J. SHIMMER:a spatial heterodyne spectrometer for remote sensing of Earth's middle atmosphere. Applied Optics,2002,41(7):1343-1352 CSCD被引 41    
5.  Lin Yunlong. Introduction to spatial heterodyne observations of water (SHOW)project and its instrument development. ITSC-X IV Proceeding Beijing(Poster),2005 CSCD被引 1    
6.  Damiani C. An imaging heterodyne spectrometer for planetary exploration. Fourier Transform Spectroscopy,2007:FTuC3 CSCD被引 1    
7.  Sheinis A I. Spatial heterodyne spectrometer for diffuse H-αspectroscopy. SPIE. 7014,2008:70140I CSCD被引 1    
8.  冯玉涛. 宽谱段空间外差干涉光谱仪. 光学精密工程,2015,23(1):48-55 CSCD被引 14    
9.  Harris W M. Applications of reflective spatial heterodyne spectroscopy to UV exploration in the Solar System. SPIE. 5488,2004:887 CSCD被引 1    
10.  Harlander J. Design of a real-fringe DASH interferometer for observations of thermospheric winds from a small satellite. Fourier Transform Spectroscopy,Optical Society of America,2013:FW1D.2 CSCD被引 1    
11.  Fei Xiaoyun. Real-fringe DASH interferometer for upper atmospheric wind and temperature observation:concept and simulation. The International Conference on Photonics and Optical Engineering and the Annual West China Photonics Conference(icPOE 2014),2015:94492S CSCD被引 1    
12.  叶松. 空间外差光谱仪系统设计. 光学精密工程,2006,14(6):959-946 CSCD被引 31    
13.  郁道银. 工程光学,2006 CSCD被引 48    
14.  Englert C R. Spatial heterodyne spectroscopy at the naval research laboratory. Applied Optics,2015,54(31):F158-F163 CSCD被引 2    
15.  冯玉涛. 空间外差光谱仪视场展宽棱镜设计理论与方法. 光学学报,2012,32(10):1030001 CSCD被引 7    
16.  Harlander J. The as-built performance of the MIGHTI interferometers. Light,Energy and the Environment Congress,2016:FTh4B.2 CSCD被引 1    
引证文献 4

1 白玉龙 高稳定性星载多普勒差分干涉仪支撑结构设计 光子学报,2018,47(9):0922002-1-0922002-8
CSCD被引 4

2 叶松 棱镜型空间外差光谱技术研究 光学学报,2019,39(11):1130002
CSCD被引 0 次

显示所有4篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号