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The Robinson Gravitational Wave Background Telescope (BICEP): a bolometric large angular scale CMB polarimeter

机译:罗宾逊引力波背景望远镜(二头肌):弓旋大角尺度CMB偏振仪

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The Robinson Telescope (BICEP) is a ground-based millimeter-wave bolometric array designed to study the polarization of the cosmic microwave background radiation (CMB) and galactic foreground emission. Such measurements probe the energy scale of the inflationary epoch, tighten constraints on cosmological parameters, and verify our current understanding of CMB physics. Robinson consists of a 250-mm aperture refractive telescope that provides an instantaneous field-of-view of 17° with angular resolution of 55' and 37' at 100 GHz and 150 GHz, respectively. Forty-nine pair of polarization-sensitive bolometers are cooled to 250 mK using a 4He/3He/3He sorption fridge system, and coupled to incoming radiation via corrugated feed horns. The all-refractive optics is cooled to 4 K to minimize polarization systematics and instrument loading. The fully steerable 3-axis mount is capable of continuous boresight rotation or azimuth scanning at speeds up to 5 deg/s. Robinson has begun its first season of observation at the South Pole. Given the measured performance of the instrument along with the excellent observing environment, Robinson will measure the E-mode polarization with high sensitivity, and probe for the B-modes to unprecedented depths. In this paper we discuss aspects of the instrument design and their scientific motivations, scanning and operational strategies, and the results of initial testing and observations.
机译:Robinson望远镜(二手)是一种基于地基毫米波的弓形阵阵列,旨在研究宇宙微波背景辐射(CMB)和银河的前景排放的极化。此类测量探测通胀时代的能量尺度,收紧宇宙学参数的限制,并验证我们对CMB物理的了解。罗宾逊包括250毫米孔径折射望远镜,分别提供17°的瞬时视野,分别为100GHz和150GHz的角度分辨率为55'和37'。使用4HE / 3HE / 3HE吸附冰箱系统将四十九对偏振敏感钻孔计冷却至250mK,并通过波纹状进料喇叭耦合到输入辐射。将全折射光学器件冷却至4K以最小化极化系统和仪器载荷。完全可转向的3轴安装件能够以高达5°/ s的速度连续的防光电旋转或方位角扫描。罗宾逊在南极开始了第一个观察季节。鉴于仪器的测量性能以及优异的观察环境,罗宾逊将以高灵敏度测量电子模式极化,并为前所未有的深度的B模式探测。在本文中,我们讨论了仪器设计的方面及其科学动机,扫描和运营策略以及初始测试和观察结果。

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