论文标题
LiteBird低频望远镜的小型原型极化调节器的测试床制备
Testbed preparation of a small prototype polarization modulator for LiteBIRD low-frequency telescope
论文作者
论文摘要
Litebird是由ISAS/JAXA领导的宇宙微波背景(CMB)辐射极化卫星任务。主要的科学目标是搜索宇宙通货膨胀时期产生的原始引力信号。 Litebird望远镜使用连续旋转的半波板(HWP)采用极化调制单元(PMU)。 PMU是通过减轻系统效应(包括1/f噪声)来达到前所未有灵敏度的关键组成部分。我们已经开发了Litebird LFT的1/10比例原型PMU,该PMU具有5层具有抗性HWP,直径为50 mm,跨越了34-161 GHz的观测频率范围。 HWP作为转子安装在超导磁轴承(SMB)上,并由高温超导体作为定子悬浮。在这项研究中,由4-K Gifford-McMahon(GM)冷却器将整个PMU系统在低温恒温室中冷却至10 K。我们在整个旋转的HWP中传播一个相干毫米波的偏振信号,并检测到调制信号。我们研究了旋转机制的调制光信号和任何旋转同步信号。我们描述了从该设置中获取的测试床系统和初步数据。该测试室旨在整合宽带HWP PMU并评估光学数据中的潜在系统效应。这样,我们可以使用全面模型进行计划,该模型需要很长时间才能进行准备和测试。
LiteBIRD is the Cosmic Microwave Background (CMB) radiation polarization satellite mission led by ISAS/JAXA. The main scientific goal is to search for primordial gravitational wave signals generated from the inflation epoch of the Universe. LiteBIRD telescopes employ polarization modulation units (PMU) using continuously rotating half-wave plates (HWP). The PMU is a crucial component to reach unprecedented sensitivity by mitigating systematic effects, including 1/f noise. We have developed a 1/10 scale prototype PMU of the LiteBIRD LFT, which has a 5-layer achromatic HWP and a diameter of 50 mm, spanning the observational frequency range of 34-161 GHz. The HWP is mounted on a superconducting magnetic bearing (SMB) as a rotor and levitated by a high-temperature superconductor as a stator. In this study, the entire PMU system is cooled down to 10 K in the cryostat chamber by a 4-K Gifford-McMahon (GM) cooler. We propagate an incident coherent millimeter-wave polarized signal throughout the rotating HWP and detect the modulated signal. We study the modulated optical signal and any rotational synchronous signals from the rotation mechanism. We describe the testbed system and the preliminary data acquired from this setup. This testbed is built to integrate the broadband HWP PMU and evaluate the potential systematic effects in the optical data. This way, we can plan with a full-scale model, which takes a long time for preparation and testing.