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Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory

Publication ,  Journal Article
Li, Y; Arnold, K; Atkins, Z; Bruno, SM; Cothard, NF; Dober, B; Duell, CJ; Duff, SM; Gallardo, PA; Healy, E; Ho, SPP; Hubmayr, J; Keating, B ...
Published in: Journal of Low Temperature Physics
May 1, 2020

The Simons Observatory will measure the cosmic microwave background temperature and polarization using a suite of new telescopes in the Atacama Desert in Chile.The Simons Observatory will use dichroic transition edge sensor (TES) bolometer arrays spanning six frequency bands from 27 to 280 GHz.The Simons Observatory will pioneer the use of a densely packed multiplexing architecture based on the microwave SQUID multiplexer (μmux), housing ∼2000 microwave resonators, each coupled to a TES. The Simons Observatory aims to multiplex each array of ∼2000 detectors with a single pair of coaxial cables and requires a multiplexing factor of ∼1000. The Simons Observatory cryogenic readout system is called the universal microwave multiplexing module (UMM). The UMM couples to both horn and lenslet-coupled detector arrays and is integrated into the universal focal-plane module (UFM) after being independently characterized. We present processes we have developed for highly repeatable and automated integration methods of UMMs, which will be needed for the production of the 49 UFMs required for the first stage of the Simons Observatory.

Duke Scholars

Published In

Journal of Low Temperature Physics

DOI

EISSN

1573-7357

ISSN

0022-2291

Publication Date

May 1, 2020

Volume

199

Issue

3-4

Start / End Page

985 / 993

Related Subject Headings

  • General Physics
  • 5104 Condensed matter physics
  • 5103 Classical physics
  • 0204 Condensed Matter Physics
  • 0203 Classical Physics
  • 0105 Mathematical Physics
 

Citation

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Li, Y., Arnold, K., Atkins, Z., Bruno, S. M., Cothard, N. F., Dober, B., … Zhu, N. (2020). Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory. Journal of Low Temperature Physics, 199(3–4), 985–993. https://doi.org/10.1007/s10909-020-02386-6
Li, Y., K. Arnold, Z. Atkins, S. M. Bruno, N. F. Cothard, B. Dober, C. J. Duell, et al. “Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory.” Journal of Low Temperature Physics 199, no. 3–4 (May 1, 2020): 985–93. https://doi.org/10.1007/s10909-020-02386-6.
Li Y, Arnold K, Atkins Z, Bruno SM, Cothard NF, Dober B, et al. Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory. Journal of Low Temperature Physics. 2020 May 1;199(3–4):985–93.
Li, Y., et al. “Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory.” Journal of Low Temperature Physics, vol. 199, no. 3–4, May 2020, pp. 985–93. Scopus, doi:10.1007/s10909-020-02386-6.
Li Y, Arnold K, Atkins Z, Bruno SM, Cothard NF, Dober B, Duell CJ, Duff SM, Gallardo PA, Healy E, Ho SPP, Hubmayr J, Keating B, Lee AT, Mangu A, McCarrick H, Niemack MD, Newburgh L, Raum C, Salatino M, Sasse T, Silva-Feaver M, Simon SM, Staggs S, Suzuki A, Ullom J, Vavagiakis EM, Vissers MR, Wang Y, Westbrook B, Wollack EJ, Xu Z, Zheng K, Zhu N. Assembly and Integration Process of the High-Density Detector Array Readout Modules for the Simons Observatory. Journal of Low Temperature Physics. 2020 May 1;199(3–4):985–993.
Journal cover image

Published In

Journal of Low Temperature Physics

DOI

EISSN

1573-7357

ISSN

0022-2291

Publication Date

May 1, 2020

Volume

199

Issue

3-4

Start / End Page

985 / 993

Related Subject Headings

  • General Physics
  • 5104 Condensed matter physics
  • 5103 Classical physics
  • 0204 Condensed Matter Physics
  • 0203 Classical Physics
  • 0105 Mathematical Physics