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A cryogenic rotation stage with a large clear aperture for the half-wave plates in the Spider instrument

机译:Spider仪器中用于半波片的具有大净孔径的低温旋转台

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摘要

We describe the cryogenic half-wave plate rotation mechanisms built for and used in Spider, a polarization-sensitive balloon-borne telescope array that observed the cosmic microwave background at 95 GHz and 150 GHz during a stratospheric balloon flight from Antarctica in January 2015. The mechanisms operate at liquid helium temperature in flight. A three-point contact design keeps the mechanical bearings relatively small but allows for a large (305 mm) diameter clear aperture. A worm gear driven by a cryogenic stepper motor allows for precise positioning and prevents undesired rotation when the motors are depowered. A custom-built optical encoder system monitors the bearing angle to an absolute accuracy of ±0.1∘. The system performed well in Spider during its successful 16 day flight.
机译:我们描述了为Spider制造和使用的低温半波片旋转机制,Spider是一种偏振敏感的球囊望远镜阵列,在2015年1月从南极洲平流层气球飞行期间观察了95 GHz和150 GHz的宇宙微波背景。机构在飞行中在液氦温度下运行。三点接触设计使机械轴承保持相对较小,但允许有较大(305 mm)直径的通孔。由低温步进电机驱动的蜗轮可实现精确定位,并在电机断电时防止不必要的旋转。定制的光学编码器系统以绝对精度±0.1∘监控轴承角度。该系统在成功的16天飞行中在Spider中表现良好。

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