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Design and first results of a Fourier Transform imaging spectrometer in the 3-5 μm range

机译:3-5μm范围内的傅立叶变换成像光谱仪的设计和初步结果

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摘要

An imaging spectrometer in the 3-5 μm wavelength range is presented. This wavelength range reveals important information about scenes such as gas or landmine detection, but the amount of light is usually low and signal to noise ratio is a real issue. We selected a Fourier transform (FT) configuration, expecting an advantage in signal to noise ratio in the presence of detector noise. Radiometric and noise models are summarized. A Michelson interferometer with its mirrors replaced by twin mirrors arranged at right angles in a hollow roof was chosen for its nearly straight equidistant fringes localized at infinity. Because in such FT-based spectral imagers, the interferogram is acquired over the whole field of the camera while the scene of interest scans the path difference range, vignetting should be strongly limited while keeping the size of the interferometer as small as possible for manufacturability and cost reasons. The key point for that purpose is to put the entrance pupil of the imaging lens inside the interferometer and to make careful trade-offs between lens F number and angular field of view. The resulting system has a spectral resolution of about 25cm~(-1) that fulfils the requirement for most targeted applications. Examples of absorption bands detection are shown.
机译:提出了一种在3-5μm波长范围内的成像光谱仪。该波长范围揭示了有关场景的重要信息,例如瓦斯或地雷检测,但光量通常很少,信噪比是一个实际问题。我们选择了傅立叶变换(FT)配置,期望在存在检测器噪声的情况下在信噪比方面具有优势。总结了辐射度和噪声模型。选择迈克尔逊干涉仪,将其反射镜替换为在中空屋顶中成直角排列的双反射镜,因为它的近等距直角条纹位于无限远处。因为在此类基于FT的光谱成像仪中,在感兴趣的场景扫描路径差异范围时会在照相机的整个视场上获取干涉图,所以应严格限制渐晕,同时将干涉仪的尺寸保持在尽可能小的可制造性和可操作性。费用原因。为此,关键是将成像透镜的入射光瞳放入干涉仪内,并在透镜F数和角视场之间进行仔细权衡。所得系统的光谱分辨率约为25cm〜(-1),可以满足大多数目标应用的要求。示出了吸收带检测的示例。

著录项

  • 来源
    《Optical design and engineering IV》|2011年|p.816715.1-816715.13|共13页
  • 会议地点 Marseille(FR)
  • 作者单位

    Laboratoire Charles Fabry, UMR 8501, Institut d'Optique, CNRS, Univ Paris Sud 11, 2 avenue Augustin Fresnel, 91127 Palaisau cedex, France.,Thales Optronique SA, 2 avenue Gay Lussac, 78990 Elancourt cedex, France;

    Laboratoire Charles Fabry, UMR 8501, Institut d'Optique, CNRS, Univ Paris Sud 11, 2 avenue Augustin Fresnel, 91127 Palaisau cedex, France.;

    Laboratoire Charles Fabry, UMR 8501, Institut d'Optique, CNRS, Univ Paris Sud 11, 2 avenue Augustin Fresnel, 91127 Palaisau cedex, France.;

    Thales Optronique SA, 2 avenue Gay Lussac, 78990 Elancourt cedex, France;

    Office National d'Etudes et de Recherches Aerospatiales, Chemin de la Huniere, 91761 Palaiseau cedex, France;

    Laboratoire Charles Fabry, UMR 8501, Institut d'Optique, CNRS, Univ Paris Sud 11, 2 avenue Augustin Fresnel, 91127 Palaisau cedex, France.;

    Laboratoire Charles Fabry, UMR 8501, Institut d'Optique, CNRS, Univ Paris Sud 11, 2 avenue Augustin Fresnel, 91127 Palaisau cedex, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 设计;
  • 关键词

    spectral imaging; optical systems design; fourier transform spectroscopy; medium wavelength infra red;

    机译:光谱成像光学系统设计;傅立叶变换光谱;中波长红外;

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