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A BALLOON-BORNE MILLIMETER-WAVE TELESCOPE FOR COSMIC MICROWAVE BACKGROUND ANISOTROPY MEASUREMENTS

机译:宇宙微波背景各向异性测量的气球型毫米波望远镜

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We report on the characteristics and design details of the Medium Scale Anisotropy Measurement telescope, a millimeter-wave, balloon-borne experiment that measures anisotropy in the cosmic microwave background radiation on 0.5° angular scales. The gondola is capable of maintaining orientation to 2′ rms and determining absolute pointing to 2.5′ accuracy during a one-night flight. Emphasis is placed on the optical and pointing performance as well as the weight and power budgets. We also discuss the total balloon/gondola mechanical system. The pendulation from this system is a ubiquitous perturbation on the pointing system. A detailed understanding in these areas is needed for developing the next generation of balloon-borne instruments.
机译:我们将报告中尺度各向异性测量望远镜的特征和设计细节,这是一种毫米波气球探测实验,可在0.5°角尺度上测量宇宙微波背景辐射中的各向异性。吊船能够在一晚的飞行中保持2'rms的方向性并确定指向2.5'精度的绝对指向。重点放在光学和指向性能以及重量和功率预算上。我们还将讨论总的气球/吊篮机械系统。该系统的干扰是指向系统上的普遍扰动。在开发下一代气球载器械时,需要在这些方面有详细的了解。

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