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Design and characterization of the POLARBEAR-2b and POLARBEAR-2c cosmic microwave background cryogenic receivers

机译:POLARBEAR-2b和POLARBEAR-2c宇宙微波本底低温接收器的设计与表征

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The POLARBEAR-2/Simons Array Cosmic Microwave Background (CMB) polarization experiment is an upgrade and expansion of the existing POLARBEAR-1 (PB-1) experiment, located in the Atacama desert in Chile. Along with the CMB temperature and is-mode polarization anisotropies, PB-1 and the Simons Array study the CMB B-mode polarization anisotropies produced at large angular scales by inflationary gravitational waves, and at small angular scales by gravitational lensing. These measurements provide constraints on various cosmolog-ical and particle physics parameters, such as the tensor-to-scalar ratio r, and the sum of the neutrino masses. The Simons Array consists of three 3.5 m diameter telescopes with upgraded POLARBEAR-2 (PB-2) cryogenic receivers, named PB-2a, -2b, and -2c. PB-2a and -2b will observe the CMB over multiple bands centered at 95 GHz and 150 GHz, while PB-2c will observe at 220 GHz and 270 GHz, which will enable enhanced foreground separation and de-lensing. Each Simons Array receiver consists of two cryostats which share the same vacuum space: an optics tube containing the cold reimaging lenses and Lyot stop, infrared-blocking filters, and cryogenic half-wave plate; and a backend which contains the focal plane detector array, cold readout components, and millikelvin refrigerator. Each PB-2 focal plane array is comprised of 7,588 dual-polarization, multi-chroic, lenslet- and antenna-coupled, Transition Edge Sensor (TES) bolometers which are cooled to 250 mK and read out using Superconducting Quantum Interference Devices (SQUIDs) through a digital frequency division multiplexing scheme with a multiplexing factor of 40. In this work we describe progress towards commissioning the PB-2b and -2c receivers including cryogenic design, characterization, and performance of both the PB-2b and -2c backend cryostats.
机译:POLARBEAR-2 / Simons阵列宇宙微波背景(CMB)极化实验是对位于智利阿塔卡马沙漠中的现有POLARBEAR-1(PB-1)实验的升级和扩展。连同CMB温度和等模极化各向异性,PB-1和Simons Array研究了由膨胀引力波在大角度范围内产生的CMB B模式极化各向异性,以及由引力透镜在小角度范围内产生的CMB B模式极化各向异性。这些测量提供了对各种宇宙学和粒子物理参数的约束,例如张量标量比r和中微子质量的总和。西蒙斯阵列由三个直径3.5 m的望远镜组成,带有升级的POLARBEAR-2(PB-2)低温接收器,分别称为PB-2a,-2b和-2c。 PB-2a和-2b将在以95 GHz和150 GHz为中心的多个频带上观察CMB,而PB-2c将在220 GHz和270 GHz处进行观察,这将增强前景分离和反透镜化。每个Simons Array接收器均由两个具有相同真空空间的低温恒温器组成:一个装有冷重成像透镜和Lyot挡光片的光学管,一个红外阻隔滤光片和一个低温半波板;后端包含焦平面检测器阵列,冷读数组件和毫ikelvin冰箱。每个PB-2焦平面阵列都由7,588个双极化,多色,小透镜和天线耦合的过渡边缘传感器(TES)辐射热计组成,该辐射热计被冷却至250 mK,并使用超导量子干涉仪(SQUID)读出通过具有40的复用因子的数字频分复用方案。在这项工作中,我们描述了PB-2b和-2c接收机调试的进展,包括PB-2b和-2c后端低温恒温器的低温设计,特性和性能。

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