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Conjugate Cassegrain telescopes for thermal source FTIR spectral radiometric calibration

机译:共轭卡塞格林望远镜,用于热源FTIR光谱辐射定标

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Abstract: Two Cassegrain telescopes were constructed to function as sender and receiver for an FTIR spectrometer primarily for the purpose of obtaining spectral data for analysis of military night vision emission targets, and spectral calibration of external variable temperature thermal radiation sources, utilizing freezing-point type blackbodies for primary radiation temperature standards. The sender and receiver telescopes, F/7 and F/5, respectively, each employ 0.30 m (12 in) diameter primary and 0.15 m (6 in) diameter secondary, protected Ag coated Zerodur mirrors. In operation, a thermal target image formed by the sender, whose optical axis is aligned with that of the receiver and spectrometer, is transmitted to and brought to a focus at the spectrometer entrance aperture by the receiver telescope. With $lambda@/8 p-v optical surface accuracy at 633 nm, telescope system tests indicate near diffraction- limited performance in the visible, and 2.81 mrad (full) FOV with further reduction achieved with field stops. Wavelength range capability of the commercially available FTIR instrument employed is approximately 0.22 $mu@m (55000 cm$+$MIN@1$/) to 22 $mu@m (450 cm$+$MIN@1$/) with wavenumber resolution of about 0.013 cm$+$MIN@1$/ in the IR to 0.769 $mu@m (13000 cm$+$MIN@1$/). In this paper, the techniques and tests employed for the telescope mirror construction are described. An innovative technique for secondary alignment for Hindle's tests of a Cassegrain utilizing a He-Ne laser is presented. Telescope mountings for positioning and alignment with the FTIR are briefly discussed, as well as radiometric and calibration parameters for the integrated system.!15
机译:摘要:构造了两个卡塞格林望远镜,用作FTIR光谱仪的发送器和接收器,其主要目的是利用冰点类型获得用于分析军事夜视发射目标的光谱数据以及外部可变温度热辐射源的光谱校准。主要辐射温度标准的黑体。发送器和接收器望远镜分别为F / 7和F / 5,分别使用直径0.30 m(12英寸)的主镜和0.15 m(6 in)直径的受保护的镀银的Zerodur镜。在操作中,由发送器形成的热目标图像(其光轴与接收器和光谱仪的光轴对齐)通过接收器望远镜传输到光谱仪的入口孔并聚焦到光谱仪的入口孔处。望远镜系统测试表明,在633 nm处具有$ lambda @ / 8 p-v光学表面精度,在可见光范围内的衍射性能接近极限,在2.81 mrad(满)FOV下,随着视场光阑的进一步降低。所用市售FTIR仪器的波长范围能力约为0.22μm@ m(55000 cm $ + $ MIN @ 1 $ /)到22μμm(450 cm $ + $ MIN @ 1 $ /),具有波数分辨率在IR中约为0.013 cm $ + MIN @ 1 $ /至0.769μm(13000 cm $ + MIN @ 1 $ /)。在本文中,描述了用于望远镜镜构造的技术和测试。提出了一种创新的二次对准技术,用于利用He-Ne激光进行Hinds对Cassegrain的测试。简要讨论了用于与FTIR定位和对准的望远镜支架,以及集成系统的辐射度和校准参数。15

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