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

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arxiv 1510.01771 v2 pith:OINNFICD submitted 2015-10-06 astro-ph.IM astro-ph.CO

classification astro-ph.IMastro-ph.CO
keywords cryogenicflightrotationspiderallowsapertureclearduring
verification ladder T0 review T1 audit T2 compute T3 formal
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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 degrees. The system performed well in Spider during its successful 16 day flight.

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