首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Conference on Ground-Based Instrumentation for Astronomy >Design, fabrication, assembly, and testing of the Florida image slicer for infrared cosmology and astrophysics (FISICA) integral field unit
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Design, fabrication, assembly, and testing of the Florida image slicer for infrared cosmology and astrophysics (FISICA) integral field unit

机译:用于红外宇宙和天体物理学(FISICA)整体田间单位的佛罗里达州图像切片机的设计,制造,装配和测试

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We discuss the design, fabrication, assembly, and testing of the prototype Florida Image Slicer for Infrared Cosmology and Astrophysics (FISICA) Integral Field Unit (IFU). FISICA is intended for large telescopes with f/numbers close to f/15, such as the KPNO 4-m and GTC 10.4-m telescopes. It implements an image slicing approach, wherein the initial image plane is optically sliced into thin strips and the strips are optically rearranged end-to-end, whereupon the composite slit image is fed into a conventional spectrograph. We divide the field of view into 22 slices, while accommodating the entire f/15 viewing solid angle. The all-reflective instrument resides in a cryogenic dewar at the initial focal plane, and places the composite slit image output precisely at the initial focus, allowing it to interface to the existing FLAMINGOS spectrograph. The mirrors were diamond turned using various tool geometries and state-of-the-art, multi-axis tool control. The mirrors are made from a single billet of aluminum, and the optical bench and mounts are made of the same alloy as the mirrors for optimum performance during cryogenic cooling. We discuss the key design efforts, emphasizing tradeoffs among performance, volume, fabrication difficulty, and alignment requirements. We describe the fabrication, and present preliminary laboratory test results.
机译:我们讨论的设计,制造,装配和原型佛罗里达切片图像的红外宇宙学和天体物理学(FISICA)积分现场单元(IFU)的测试。 Fisica适用于靠近F / 15的F / NUMBER的大型望远镜,例如KPNO 4-M和GTC 10.4-M望远镜。它实现了一种图像切片方法,其中初始图像平面被光学切成光滑的条带,并且条带是光学重新排列的端到端,随后将复合狭缝图像馈入传统的光谱仪。我们将视野划分为22片,同时容纳整个F / 15观察立体角度。全反射仪驻留在低温杜瓦瓶在初始焦平面,及地点复合狭缝图像输出精确地在初始聚焦,允许它接口到现有火烈鸟摄谱仪。使用各种工具几何形状和最先进的多轴工具控制,镜子是钻石转动。镜子由单个铝坯制成,光盘和安装件由与镜子相同的合金制成,以便在低温冷却期间的最佳性能。我们讨论关键设计努力,强调性能,体积,制造难度和对准要求之间的权衡。我们描述了制造,并提出了初步实验室测试结果。

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