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A Continuous 100-mK Helium-Light Cooling System for MUSCAT on the LMT

机译:用于LMT上的Muscat连续100 mk氦气冷却系统

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摘要

The MUSCAT instrument is a large-format camera planned for installation on the Large Millimeter Telescope in 2018. MUSCAT requires continuous cooling of several large-volume stages to sub-Kelvin temperatures, with the focal plane cooled to 100?mK. Through the use of continuous sorption coolers and a miniature dilution refrigerator, the MUSCAT project can fulfil its cryogenic requirements at a fraction of the cost and space required for conventional dilution systems. Our design is a helium-light system, using a total of only 9?L of helium-3 across several continuous cooling systems, cooling from 4?K to 100?mK. Here we describe the operation of both the continuous sorption and the miniature dilution refrigerator systems used in this system, along with the overall thermal design and budgeting of MUSCAT. MUSCAT will represent the first deployment of these new technologies in a science-grade instrument and will prove the concept as a viable option for future large-scale experiments such as CMB-S4.
机译:Muscat仪器是一台用于安装在大型毫米望远镜上的大型摄像机,2018年。马斯喀特需要连续冷却几个大容量阶段到亚开尔文温度,焦平面冷却至100?MK。通过使用连续吸附冷却器和微型稀释冰箱,Muscat项目可以在常规稀释系统所需的成本和空间的一小部分下满足其低温要求。我们的设计是氦气系统,在几种连续冷却系统中使用总共9升氦-3,从4Ωk冷却到100?MK。在这里,我们描述了该系统中使用的连续吸附和微型稀释冰箱系统的操作,以及Muscat的总热设计和预算。 Muscat将代表在科学级仪器中的第一次部署这些新技术,并将证明该概念作为未来大型实验(如CMB-S4)的可行选择。

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