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Pre-flight integration and characterization of the SPIDER balloon-borne telescope

机译:飞行前的集成与蜘蛛气球 - 传送望远镜的特征

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We present the results of integration and characterization of the Spider instrument after the 2013 pre-flight campaign. Spider is a balloon-borne polarimeter designed to probe the primordial gravitational wave signal in the degree-scale B-mode polarization of the cosmic microwave background. With six independent telescopes housing over 2000 detectors in the 94 GHz and 150 GHz frequency bands, Spider will map 7.5% of the sky with a depth of 11 to 14 μK·arcmin at each frequency, which is a factor of ~5 improvement over Planck. We discuss the integration of the pointing, cryogenic, electronics, and power sub-systems, as well as pre-flight characterization of the detectors and optical systems. Spider is well prepared for a December 2014 flight from Antarctica, and is expected to be limited by astrophysical foreground emission, and not instrumental sensitivity, over the survey region.
机译:我们在2013年飞行前运动之后介绍了蜘蛛仪器的整合和表征。蜘蛛是一个气球 - 传播的偏振仪,旨在探测宇宙微波背景的程度级B模式极化中的原始重力波信号。在94 GHz和150 GHz频段中,六个独立望远镜外壳超过2000个探测器,蜘蛛将在每个频率下映射7.5%的天空,深度为11至14μk·arcmin,这是对普朗克的一个〜5的改进。 。我们讨论了指向,低温,电子产品和功率子系统的集成,以及探测器和光学系统的飞行前表征。蜘蛛是2014年12月从南极洲的飞行中准备的,预计通过在调查区域的天体物理前景排放,而不是有乐观敏感性的限制。

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