THE Q/U IMAGING EXPERIMENT INSTRUMENT

The Q/U Imaging ExperimenT (QUIET) is designed to measure polarization in the cosmic microwave background, targeting the imprint of inflationary gravitational waves at large angular scales(~1[degrees]). Between 2008 October and 2010 December, two independent receiver arrays were deployed sequentiall...

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Veröffentlicht in:The Astrophysical journal 2013-05, Vol.768 (1), p.1-28
Hauptverfasser: Bischoff, C, Brizius, A, Buder, I, CHINONE, Y, Cleary, K, Dumoulin, R N, Kusaka, A, Monsalve, R, Naess, S K, Newburgh, L B
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Sprache:eng
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Zusammenfassung:The Q/U Imaging ExperimenT (QUIET) is designed to measure polarization in the cosmic microwave background, targeting the imprint of inflationary gravitational waves at large angular scales(~1[degrees]). Between 2008 October and 2010 December, two independent receiver arrays were deployed sequentially on a 1.4 m side-fed Dragonian telescope. The polarimeters that form the focal planes use a compact design based on high electron mobility transistors (HEMTs) that provides simultaneous measurements of the Stokes parameters Q, U, and I in a single module. The 17-element Q-band polarimeter array, with a central frequency of 43.1 GHz, has the best sensitivity (69 mu Ks super(1/2)) and the lowest instrumental systematic errors ever achieved in this band, contributing to the tensor-to-scalar ratio at r < 0.1. The 84-element W-band polarimeter array has a sensitivity of 87 mu Ks super(1/2) at a central frequency of 94.5 GHz. It has the lowest systematic errors to date, contributing at r < 0.01. The two arrays together cover multipoles in the range [scriptl] ~ 25-975. These are the largest HEMT-based arrays deployed to date. This article describes the design, calibration, performance, and sources of systematic error of the instrument.
ISSN:0004-637X
1538-4357
DOI:10.1088/0004-637X/768/1/9