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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >MEGARA Optics: Sub-aperture Stitching Interferometry for Large Surfaces
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MEGARA Optics: Sub-aperture Stitching Interferometry for Large Surfaces

机译:Megara Optics:大表面的副孔径缝合干涉测量法

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In this work, we present a detailed analysis of sub-aperture interferogram stitching software to test circular and elliptical clear apertures with diameters and long axes up to 272 and 180 mm, respectively, from the Multi-Espectrografo en GTC de Alta Resolucion para Astronomia (MEGARA). MEGARA is a new spectrograph for the Gran Telescopio Canarias (GTC). It offers a resolution between 6000 and 20000 via the use of volume phase holographic gratings. It has an integral field unit and a set of robots for multi-object spectroscopy at the telescope focal plane. The output end of the fibers forms the spectrograph pseudo-slit. The fixed geometry of the collimator and camera configuration requires prisms in addition to the flat windows of the volume phase holographic gratings. There are 73 optical elements of large aperture and high precision manufactured in Mexico at the Instituto Nacional de Astrofisica, Optica y Electronica (INAOE) and the Centro de Investigaciones en Optica (CIO). The principle of stitching interferometry is to divide the surface being tested into overlapping small sections, which allows an easier analysis (Kim & Wyant 1981). This capability is ideal for non-contact tests for unique and large optics as required by astronomical instruments. We show that the results obtained with our sub-aperture stitching algorithm were consistent with other methods that analyze the entire aperture. We used this method to analyze the 24 MEGARA prisms that could not be tested otherwise. The instrument has been successfully commissioned at GTC in all the spectral configurations. The fulfillment of the irregularity specifications was one of the necessary conditions to comply with the spectral requirements.
机译:在这项工作中,我们对子光圈干涉图缝合软件的详细分析,以分别从多Espectrografo en GTC De Alta Solusulion Para天文学(梅加拉)。 Megara是Gran Telescopio Canarias(GTC)的新频谱仪。它通过使用体积相位全息光栅提供6000和20000之间的分辨率。它具有一体的现场单元和用于望远镜焦平面的多对象光谱的一组机器人。纤维的输出端形成光谱仪伪狭缝。除了体积相位全息光栅的扁平窗口之外,准直器和摄像机配置的固定几何形状需要棱镜。在墨西哥的大型孔径和高精度有73个光学元件,在Istituto Nacional de Astrofisica,Optica Y Electronica(Inaoe)和Centro de Investigaciones en Optica(CIO)。缝合干涉测量法的原理是将测试的表面分成重叠的小部分,这允许更容易的分析(Kim&Wyant 1981)。这种能力是天文仪器要求的独特和大型光学器件的非接触式测试的理想选择。我们表明,通过我们的子孔径缝合算法获得的结果与分析整个孔径的其他方法一致。我们使用这种方法来分析24兆瓦的棱镜,否则无法测试。该仪器已在GTC中成功委托所有光谱配置。不规则规范的满足是符合光谱要求的必要条件之一。

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