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

机译:偏光轴-2B和偏光轴-2C宇宙微波背景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 E-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 cosmological 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)极化实验是现有的偏光轴-1(PB-1)实验的升级和扩展,位于智利阿塔卡马沙漠中。随着CMB温度和E模式偏振各向异性,PB-1和SIMONS阵列研究通过通胀重力波以大角度缩放产生的CMB B模式偏振各向异性,并且通过重力透镜以小角度缩放。这些测量提供了各种宇宙学和颗粒物理参数的约束,例如张量标量r,以及中性块的总和。 SIMONS阵列由三个3.5米直径的伸缩式伸出型焦耦合接收器组成,名为PB-2A,-2B和-2C的升级的偏光轴-2(PB-2)。 PB-2A和-2B将在以95 GHz和150 GHz为中心的多个频段上观察CMB,而PB-2C将在220 GHz和270 GHz中观察,这将实现增强的前景分离和脱透镜。每个SIMONS阵列接收器由两个低温托管组成,它共用相同的真空空间:含有冷测定镜片和洛膜停止,红外线遮挡滤光器和低温半波板的光学管;和一个包含焦平面检测器阵列,冷读出组件和Millikelvin冰箱的后端。每个PB-2的焦平面阵列由7588双极化,多chroic,lenslet-和天线耦合,过渡边缘传感器(TES)辐射热测量计,其被冷却到250 mK以下,且读出的使用超导量子干涉器件(鱿鱼)通过具有40复用因子的数字频分复用方案在这项工作中,我们描述向调试PB-2b和-2C接收机包括低温设计,表征,和PB-2b和-2C后端低温恒温器两者的性能的进步。

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