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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >An Image Slicer Integral Field Unit with Diffraction-limited Performance for Three-Dimensional Imaging Spectroscopy
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An Image Slicer Integral Field Unit with Diffraction-limited Performance for Three-Dimensional Imaging Spectroscopy

机译:三维成像光谱仪具有衍射极限性能的图像切片器积分场单元

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摘要

We have designed and constructed an advanced image slicer (AIS) integral field unit (IFU). The IFU employs an all-mirror design and will be installed in the Penn State near-IR Imager and Spectrograph (PIRIS) for three-dimensional integral field spectroscopy at various astronomical telescopes. Using the AIS technique, the slicer IFU can preserve the telescope's focal ratio and pupil (both position and size) while maximizing the packing efficiency for three-dimensional data on the detector. Compared to other existing AIS IFU designs, our design, which uses monolithic optical components for both pupil and field mirror arrays, provides a convenient engineering solution for manufacturing, using the state-of-the-art diamond-turning machines and alignment of the IFU optics. Our slicer mirror array was also manufactured by diamond turning, with all the mirrors simultaneously machined, which also simplifies the procedure for the manufacture and the assembly of the mirrors. We present the IFU optical description, component test results, and overall IFU system performance. We also discuss possible science applications using the IFU.
机译:我们已经设计并构建了高级图像切片器(AIS)积分场单元(IFU)。 IFU采用全反射镜设计,将安装在宾夕法尼亚州立大学的近红外成像仪和光谱仪(PIRIS)中,用于各种天文望远镜的三维积分场光谱学。使用AIS技术,切片机IFU可以保留望远镜的焦比和瞳孔(位置和大小),同时最大化检测器上三维数据的打包效率。与其他现有的AIS IFU设计相比,我们的设计使用了单片光学组件同时用于光瞳和场镜阵列,使用最新的金刚石车床和IFU的对准为制造提供了方便的工程解决方案。光学。我们的切片机反射镜阵列也是通过金刚石车削制造的,所有反射镜同时进行加工,这也简化了反射镜的制造和组装过程。我们介绍了IFU光学说明,组件测试结果以及IFU系统的整体性能。我们还将讨论使用IFU的可能的科学应用。

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