First Implementation of TES Bolometer Arrays with SQUID-based Multiplexed Readout on a Balloon-Borne Platform

被引:3
作者
Aubin, Francois [1 ]
Aboobaker, Asad M.
Ade, Peter
Baccigalupi, Carlo
Bao, Chaoyun
Borrill, Julian
Cantalupo, Christopher
Chapman, Daniel
Didier, Joy
Dobbs, Matt [1 ]
Grainger, Will
Hanany, Shaul
Hubmayr, Johannes
Hyland, Peter [1 ]
Hillbrand, Seth
Jaffe, Andrew
Johnson, Bradley
Jones, Terry
Kisner, Theodore
Klein, Jeff
Korotkov, Andrei
Leach, Sam
Lee, Adrian
Limon, Michele
MacDermid, Kevin [1 ]
Matsumura, Tomotake
Meng, Xiaofan
Miller, Amber
Milligan, Michael
Polsgrove, Daniel
Ponthieu, Nicolas
Raach, Kate
Reichborn-Kjennerud, Britt
Sagiv, Ilan
Smecher, Graeme [1 ]
Tran, Huan
Tucker, Gregory S.
Vinokurov, Yury
Yadav, Amit
Zaldarriaga, Matias
Zilic, Kyle
机构
[1] McGill Univ, Montreal, PQ H3A 2T8, Canada
来源
MILLIMETER, SUBMILLIMETER, AND FAR-INFRARED DETECTORS AND INSTRUMENTATION FOR ASTRONOMY V | 2010年 / 7741卷
基金
加拿大自然科学与工程研究理事会; 英国科学技术设施理事会;
关键词
TES; bolometer; SQUID; CMB; balloon-borne; multiplexing;
D O I
10.1117/12.857596
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
EBEX (the E and B EXperiment) is a balloon-borne telescope designed to measure the polarisation of the cosmic microwave background radiation. During a two week long duration science flight over Antarctica, EBEX will operate 768, 384 and 280 spider-web transition edge sensor (TES) bolometers at 150, 250 and 410 GHz, respectively. The 10-hour EBEX engineering flight in June 2009 over New Mexico and Arizona provided the first usage of both a large array of TES bolometers and a Superconducting QUantum Interference Device (SQUID) based multiplexed readout in a space-like environment. This successful demonstration increases the technology readiness level of these bolometers and the associated readout system for future space missions. A total of 82, 49 and 82 TES detectors were operated during the engineering flight at 150, 250 and 410 GHz. The sensors were read out with a new SQUID-based digital frequency domain multiplexed readout system that was designed to meet the low power consumption and robust autonomous operation requirements presented by a balloon experiment. Here we describe the system and the remote, automated tuning of the bolometers and SQUIDs. We compare results from tuning at float to ground, and discuss bolometer performance during flight.
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页数:10
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