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FRD characterization in Large-scale for FOCCoS of Prime Focus Spectrograph for Subaru telescope

机译:斯巴鲁望远镜的主要聚焦光谱仪的FOCCoS的大规模FRD表征

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The focal ratio degradation effects on optical fibers, technically referred to as FRD, has been the subject of intense studies since the beginning of the use of optical fibers in the construction of instruments applied in astronomy. A number of studies attempt to relate FRD to light loss in the optical system and other studies attempt to qualify and quantify FRD as a function of the stress induced during assembly of the structures supporting the ends of the optical fibers. In this work, we present a large-scale study to characterize FRD in all the fibers that make up the cables of the FOCCoS, Fiber Optical Cable and Connectors System project. FOCCoS, has the main function of capturing the direct light from the focal plane of Subaru Telescope using 2400 optical fibers, each one with a microlens in its tip, and conducting this light through a route containing connectors to a set of four spectrographs. The optical fiber cable is divided in 3 different segments called Cable A, Cable B and Cable C. Multi-fibers connectors assure precise connection among all optical fibers of the segments, providing flexibility for instrument changes. Our study provides procedures and methods to analyze the effects of FRD on all cable segments for each type of termination involved. Special attention is devoted to the understanding of how angular deviations between the input surface of the fiber and the test beam can significantly influence the calculation of FRD in optical fibers.
机译:自从开始在用于天文学的仪器的构造中使用光纤以来,对光纤的焦比劣化影响(技术上称为FRD)一直是研究的主题。许多研究试图将FRD与光学系统中的光损失联系起来,而其他一些研究则试图根据支撑光纤末端的结构在组装过程中引起的应力来对FRD进行定性和量化。在这项工作中,我们提出了一项大规模研究,以表征构成FOCCoS,光纤电缆和连接器系统项目的所有光纤中的FRD。 FOCCoS的主要功能是使用2400根光纤从斯巴鲁望远镜的焦平面捕获直射光,每根光纤的尖端都带有微透镜,并将该光通过包含连接器的路径传导到一组四个光谱仪。光纤电缆分为3个不同的段,分别称为电缆A,电缆B和电缆C。多光纤连接器可确保段中所有光纤之间的精确连接,从而为更换仪器提供了灵活性。我们的研究提供了程序和方法来分析FRD对所涉及的每种终端类型在所有电缆段上的影响。特别注意了解光纤输入表面和测试光束之间的角度偏差如何对光纤中FRD的计算产生重大影响。

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