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DOI10.1117/12.2312856
Design and characterization of a ground-based absolute polarization calibrator for use with polarization sensitive CMB experiments
Navaroli, M. F.; Teply, G. P.; Crowley, K. D.; Kaufman, J. P.; Galitzki, N. B.; Arnold, K. S.; Keating, B. G.
通讯作者Navaroli, M. F.
会议名称Conference on Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy IX
会议日期JUN 12-15, 2018
会议地点Austin, TX
英文摘要

We present the design and characterization of a ground-based absolute polarization angle calibrator accurate to better than 0.1 degrees for use with polarization sensitive cosmic microwave background (CMB) experiments. The calibrator's accuracy requirement is driven by the need to reduce upper limits on cosmic polarization rotation, which is expected to be zero in a large class of cosmological models. Cosmic polarization effects such as cosmic birefringence and primordial magnetic fields can generate spurious B-modes that result in non-zero CMB TB and EB correlations that are degenerate with a misalignment of detector orientation. Common polarized astrophysical sources used for absolute polarization angle calibration have not been characterized to better than 0.5 degrees. Higher accuracy can be achieved through self-calibration methods, however these are subject to astrophysical foreground contamination and inherently assume the absence of effects like cosmic polarization rotation. The deficiencies in these two calibration methods highlight the need for a well characterized polarized source. The calibrator we present utilizes a 76 GHz Gunn oscillator coupled to a frequency doubler, pyramidal horn antenna, and co-rotating wire-grid polarizer. A blackened optics tube was built around the source in order to mitigate stray reflections, attached to a motor-driven rotation stage, then mounted in a blackened aluminum enclosure for further reflection mitigation and robust weatherproofing. We use an accurate bubble level in combination with four precision-grade aluminum planes located within the enclosure to calibrate the source's linear polarization plane with respect to the local gravity vector to better than the 0.1 degrees goal. In 2017 the calibrator was deployed for an engineering test run on the POLARBEAR CMB experiment located in Chile's Atacama Desert and is being upgraded for calibration of the POLARBEAR-2b receiver in 2018. In the following work we present a detailed overview of the calibrator design, systematic control, characterization, deployment, and plans for future CMB experiment absolute polarization calibration.


英文关键词absolute polarization calibration cosmic microwave background cosmic polarization rotation cosmic birefringence primordial magnetic fields
来源出版物MILLIMETER, SUBMILLIMETER, AND FAR-INFRARED DETECTORS AND INSTRUMENTATION FOR ASTRONOMY IX
ISSN0277-786X
EISSN1996-756X
出版年2018
卷号10708
EISBN978-1-5106-1970-8
出版者SPIE-INT SOC OPTICAL ENGINEERING
类型Proceedings Paper
语种英语
国家USA
收录类别CPCI-S
WOS记录号WOS:000451719300037
WOS关键词GRAVITY-WAVES ; MICROWAVE ; BIREFRINGENCE ; VIOLATION ; SIGNATURE ; PROBE
WOS类目Astronomy & Astrophysics ; Instruments & Instrumentation ; Optics
WOS研究方向Astronomy & Astrophysics ; Instruments & Instrumentation ; Optics
资源类型会议论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/307878
作者单位Univ Calif San Diego, San Diego, CA 92103 USA
推荐引用方式
GB/T 7714
Navaroli, M. F.,Teply, G. P.,Crowley, K. D.,et al. Design and characterization of a ground-based absolute polarization calibrator for use with polarization sensitive CMB experiments[C]:SPIE-INT SOC OPTICAL ENGINEERING,2018.
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