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Opto-mechanical design and performance of a compact three-frequency camera for the Millimeter Bolometer Array Camera on the Atacama Cosmology Telescope

机译:ATACAMA宇宙学望远镜上毫米电位计阵列摄像机紧凑三频摄像机的光电设计和性能

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The 6-meter Atacama Cosmology Telescope will map the cosmic microwave background at millimeter wave-lengths. The commissioning instrument for the telescope, the Millimeter Bolometer Array Camera, is based on arefractive optical system which simultaneously images three separate fields of view at three different frequencies:145, 220, and 280 GHz. Each frequency band contains around twelve individual optical elements at five differenttemperature stages ranging from 300 K to 300 mK and a 32 x 32 array of Transition Edge Sensor bolometers at300 mK. We discuss the design of the close-packed on-axis optical design of the three frequencies. The thermaldesign and performance of the system are presented in the context of the scientific requirements and observingschedule. A major part of the design was the incorporation of multiple layers of magnetic shielding. We discussthe performance of the 145 GHz optical system in 2007 and the implementation of the additional two frequencychannels in 2008.
机译:6米Atacama宇宙学望远镜将在毫米波长的宇宙微波背景映射。望远镜的调试仪器,毫米辐射计阵列相机是基于IsFrfactive光学系统,它同时以三种不同的频率(280 GHz为三种不同的视野)。每个频带包含在五个不同温度级的大约12个单独的光学元件,范围为300k至300​​ mk,300 x 32×32×32阵列的过渡边缘传感器钻孔计。我们讨论了三个频率近轴上光学设计的设计。系统的热名义和性能是在科学要求和观察中的背景下提供的。该设计的主要部分是掺入多层磁屏蔽。我们在2007年讨论了145 GHz光学系统的性能,并在2008年实施了额外的两个频道。

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