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The CLASS 150/220 GHz Polarimeter Array: Design, Assembly, and Characterization

Authors :
Mark Halpern
Johannes Hubmayr
Benjamin Keller
Kevin L. Denis
Edward J. Wollack
Carolina Núñez
Matthew Petroff
Kongpop U-Yen
Charles L. Bennett
Lance Corbett
Kyle Helson
Karwan Rostem
Mandana Amiri
Gene C. Hilton
Carl D. Reintsema
Sumit Dahal
Rahul Datta
John W. Appel
Thomas Essinger-Hileman
Tobias A. Marriage
Source :
Journal of Low Temperature Physics. 199:289-297
Publication Year :
2020
Publisher :
Springer Science and Business Media LLC, 2020.

Abstract

We report on the development of a polarization-sensitive dichroic (150/220 GHz) detector array for the Cosmology Large Angular Scale Surveyor (CLASS) delivered to the telescope site in June 2019. In concert with existing 40 and 90 GHz telescopes, the 150/220 GHz telescope will make observations of the cosmic microwave background over large angular scales aimed at measuring the primordial B-mode signal, the optical depth to reionization, and other fundamental physics and cosmology. The 150/220 GHz focal plane array consists of three detector modules with 1020 transition edge sensor (TES) bolometers in total. Each dual-polarization pixel on the focal plane contains four bolometers to measure the two linear polarization states at 150 and 220 GHz. Light is coupled through a planar orthomode transducer (OMT) fed by a smooth-walled feedhorn array made from an aluminum-silicon alloy (CE7). In this work, we discuss the design, assembly, and in-lab characterization of the 150/220 GHz detector array. The detectors are photon-noise limited, and we estimate the total array noise-equivalent power (NEP) to be 2.5 and 4 aW$\sqrt{\mathrm{s}}$ for 150 and 220 GHz arrays, respectively.<br />Comment: 8 pages, 5 figures, Published in J Low Temp Phys

Details

ISSN :
15737357 and 00222291
Volume :
199
Database :
OpenAIRE
Journal :
Journal of Low Temperature Physics
Accession number :
edsair.doi.dedup.....c35aa0d0ffff973f9dd367e641b388d7
Full Text :
https://doi.org/10.1007/s10909-019-02317-0