ZHAI Wen-chao, XU Jun, DING Le, ZHENG Xiao-bing. Collimator design for novel spectral tunable calibration source system[J]. Journal of Applied Optics, 2013, 34(4): 570-574.
Citation: ZHAI Wen-chao, XU Jun, DING Le, ZHENG Xiao-bing. Collimator design for novel spectral tunable calibration source system[J]. Journal of Applied Optics, 2013, 34(4): 570-574.

Collimator design for novel spectral tunable calibration source system

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  • High accuracy spectral tunable calibration light source is a novel calibration light source, which especially accounts for the stringent calibration requirements of hyper-spectral remote sensors. A broadband and large aperture apochromatic collimator was designed. The lens worked in band of 400~1 000 nm, half field of view was 2.2, relative aperture F was 2.8, and focal length was 135 mm. According to the corrected formula of parial dispersion (P) and Abbe number (), the original optical structure was acquired, based on the principles of apochromatic lens design. The secondary spectrum was corrected well with the help of Zemax software. At last, the lens was apochromatic in the whole working band with secondary spectrum residual of about 0.04 mm, and other aberrations are balanced well. The Lens's MTFs are better than 0.8 at spatial frequency of 37 lp/mm, which meet the requirements of the light source system.
  • [1]

    DUDLEY D, DUNCAN W, SLAUGHTER J.Emerging digital micromirror device (DMD) applications[J]. SPIE, 2003, 4985:14-25.
    [2]陈风, 郑小兵. 光谱非匹配对光学遥感器定标精度的影响[J]. 光学精密工程, 2008, 16(3): 415-419.
    CHEN Feng, ZHENG Xiao-bing.Influence of spectrum not-matching on calibration precision of remote sensor[J]. Optics and Precision Engineering,2008,16(3): 415-419. (in Chinese with an English abstract).
    [3]郑小兵, 袁银麟,徐秋云,等. 辐射定标的新型参考光源技术[J]. 应用光学, 2012,33(1):  101-107.
    ZHENG Xiao-bing,YUAN Yin-lin, XU Qiu-yun,et al. New reference sources for radiometric calibration[J]. Journal of Applied Optics, 2003, 33(1):101-107. (in Chinese with an English abstract).
    [4]BROWN S W, RICE J P, NEIRA J E, et al.. Spectrally tunable sources for advanced radiometric applications[J]. Journal of Research of the National Institute of Standards and Technology, 2006, 111: 401-410.
    [5]BROWN S W, SAUNDERS R D, LI Zhi-gang, et al. An absolute detector-based spectral radiance source[J]. SPIE, 2010, 7807:78070A-1-78070A -8.
    [6]计卓馨, 刘智颖, 付跃刚. 超光谱成像光学设计[J]. 应用光学, 2012,33(1): 26-29.
    JI Zhuo-xin, LIU Zhi-ying, FU Yue-gang.Optical design of hyperspectral imager[J]. Journal of Applied Optics,2012, 33(1): 26-29.(in  Chinese with an English abstract)
    [7]赵葆常,杨建峰,陈立武,等. 干涉成像光谱仪中宽谱段傅氏光学系统设计[J]. 光子学报, 2009, 38(3): 468-473.
    ZHAO Bao-chang, YANG Jian-feng, CHEN Li-wu, et al. Design of the wide bands Fourier lens[J]. Acta Photonica Sinica, 2009,38(3): 468-473. (in Chinese with an English abstract).
    [8]FISCHER R E, GRANT A J. Removing the mystique of glass selection[J].   SPIE, 2004, 5524: 134-146.
    [9]王美钦, 王忠厚, 白加光. 宽谱段光学系统消二级光谱的设计[J]. 应用光学, 2010, 31(3): 360-364.
    WANG Mei-qin, WANG Zhong-hou, BAI Jia-guang, et al. Removing secondary spectrum in wide spectrum optical system[J].Journal of Applied Optics, 2010, 31(3): 360-364. (in Chinese with an English abstract).
    [10]SHANNON R R. The art and science of optical design[M]. New York: Cambridge University Press, 1997.
    [11]陈立武, 杨建峰, 洪新华, 等.宽谱段折射式长焦光学镜头[J]. 光子学报,2004, 33(9): 1123-1126.
    CHEN Li-wu, YANG Jian-feng, HONG Xin-hua, et al. Wide bands long focal refracting lens[J].Acta Photonica Sinica, 2004, 33(9): 1123-1126.(in Chinese with an English abstract).
    [12]GRUESCU C, NICOARA I, POPOV D, et al.. Optical glass compatibility for the design of apochromatic systems[J]. Science of Sintering,2008, 40: 131-140.
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