论文标题

一个低温连续旋转的半波板,用于极性双方2B宇宙微波背景接收器

A cryogenic continuously rotating half-wave plate for the POLARBEAR-2b cosmic microwave background receiver

论文作者

Hill, C. A., Kusaka, A., Ashton, P., Barton, P., Adkins, T., Arnold, K., Bixler, B., Ganjam, S., Lee, A. T., Matsuda, F., Matsumura, T., Sakurai, Y., Tat, R., Zhou, Y.

论文摘要

我们介绍了Polarbear-Bear-2b(PB-2B)宇宙微波背景(CMB)接收器的低温连续旋转半波板(CHWP)的设计和实验室评估,Simons阵列的第二部分。 PB-2B将在智利阿塔卡马沙漠中观察到以90和150 GHz为中心的智利阿塔卡马沙漠的海拔5200 m。为了抑制大气1/f噪声并减轻差异正交检测器时产生的系统效应,PB-2B使用以2 Hz旋转的CHWP旋转来调节线性天空极化。 CHWP的孔直径为440毫米,在PB-2B接收器低温恒温器中冷却至$ 50 K。 It consists of a low-friction superconducting magnetic bearing (SMB) and a low-torque synchronous electromagnetic motor, which together dissipate < 2 W. During cooldown, a grip-and-release mechanism centers the rotor to < 0.5 mm, and during continuous rotation, an incremental optical encoder measures the rotor angle with a noise level of 0.1 $\mathrm{μrad / \ sqrt {hz}} $。我们讨论了PB-2B CHWP的实验要求,其各个子系统的设计及其在实验室中的评估结果。提出的CHWP已被部署到智利,预计将在2020年或2021年首先看到PB-2B。

We present the design and laboratory evaluation of a cryogenic continuously rotating half-wave plate (CHWP) for the POLARBEAR-2b (PB-2b) cosmic microwave background (CMB) receiver, the second installment of the Simons Array. PB-2b will observe at 5,200 m elevation in the Atacama Desert of Chile in two frequency bands centered at 90 and 150 GHz. In order to suppress atmospheric 1/f noise and mitigate systematic effects that arise when differencing orthogonal detectors, PB-2b modulates linear sky polarization using a CHWP rotating at 2 Hz. The CHWP has a 440 mm clear aperture diameter and is cooled to $\approx$ 50 K in the PB-2b receiver cryostat. It consists of a low-friction superconducting magnetic bearing (SMB) and a low-torque synchronous electromagnetic motor, which together dissipate < 2 W. During cooldown, a grip-and-release mechanism centers the rotor to < 0.5 mm, and during continuous rotation, an incremental optical encoder measures the rotor angle with a noise level of 0.1 $\mathrm{μrad / \sqrt{Hz}}$. We discuss the experimental requirements for the PB-2b CHWP, the designs of its various subsystems, and the results of its evaluation in the laboratory. The presented CHWP has been deployed to Chile and is expected to see first light on PB-2b in 2020 or 2021.

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