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Preliminary Mechanical Design of the Gemini Infrared Multi-Object Spectrograph (GIRMOS) Cryostat

机译:Gemini红外多物体光谱仪(Girmos)Cryostat的初步机械设计

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In this paper we discuss the mechanical design of the GIRMOS Cryostat. GIRMOS is an adaptive optics fed multi-object Integral-Field Spectrograph with a parallel imaging capability and will be installed at the Gemini North Observatory. This instrument includes four separate identical spectrograph channels arranged symmetrically around the central axis of the instrument which provide it its multiplexing capability. Each spectrograph channel starts off at the object selection mechanism. The object selection mechanism contains four motorized fold mirror assemblies which scan the incoming light from the telescope to look at four separate objects simultaneously or combine their efforts to look at a single object in a tiled mode. Each of the four individual beams from the object selection system are then directed into the instrument dewar via separate entrance windows. Within the dewar each IFS beam moves through an anamorphic relay, an optical image slicer assembly and eventually makes it to a Spectrograph unit. All of these assemblies are located on a single cold bench within the dewar. The instrument imager is located along the central axis of the dewar and is housed in the cold bench as well. In this paper we will provide some details regarding the Cryostat design, the mechanical packaging of the IFS and imager along with some of the thermal load mitigation techniques employed. We will also discuss some key performance requirements that were expected from the Cryostat and the design choices we made in order to achieve them.
机译:在本文中,我们讨论了Girmos Cryostat的机械设计。 Girmos是一种自适应光学馈送多对象积分场光谱仪,具有并行成像能力,并将安装在Gemini North天文台。该仪器包括四个独立的相同光谱仪通道,围绕仪器的中心轴对称地布置,其提供其复用能力。每个光谱仪信道在对象选择机制开始。物体选择机制包含四个电动折叠镜组件,其扫描来自望远镜的入射光,同时查看四个单独的物体,或者结合其努力以在平铺模式下查看单个对象。然后,来自物体选择系统的四个单独梁中的每一个通过单独的入口窗口被引导到仪器杜瓦。在露天度内,每个IFS束通过变形继电器移动,光学图像切片机组件并最终使其成为光谱仪单元。所有这些组件都位于杜瓦尔的单个冷板上。仪器成像仪沿着杜瓦的中心轴线位于冷板中。在本文中,我们将提供关于低温恒温器设计的一些细节,IFS和成像仪的机械包装以及采用的一些热负荷缓解技术。我们还将讨论一项预期的低温恒温器和我们所造成的设计选择的关键性能要求。

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