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The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module

Publication ,  Journal Article
Huber, ZB; Li, Y; Vavagiakis, EM; Choi, SK; Connors, J; Cothard, NF; Duell, CJ; Galitzki, N; Healy, E; Hubmayr, J; Johnson, BR; Keller, B ...
Published in: Journal of Low Temperature Physics
November 1, 2022

The Simons Observatory (SO) includes four telescopes that will measure the temperature and polarization of the cosmic microwave background using over 60,000 highly sensitive transition-edge bolometers (TES). These multichroic TES bolometers are read out by a microwave RF SQUID multiplexing system with a multiplexing factor of 910. Given that both TESes and SQUIDs are susceptible to magnetic field pickup and that it is hard to predict how they will respond to such fields, it is important to characterize the magnetic response of these systems empirically. This information can then be used to limit spurious signals by informing magnetic shielding designs for the detectors and readout. This paper focuses on measurements of magnetic pickup with different magnetic shielding configurations for the SO universal multiplexing module (UMM), which contains the SQUIDs, associated resonators, and TES bias circuit. The magnetic pickup of a prototype UMM was tested under three shielding configurations: no shielding (copper packaging), aluminum packaging for the UMM, and a tin/lead-plated shield surrounding the entire dilution refrigerator 100 mK cold stage. We also present measurements of the pickup in the UMM when aluminum feedhorns are installed. The measurements show that the aluminum packaging outperforms the copper packaging by a shielding factor of 8-10, and adding the tin/lead-plated 1K shield further increases the relative shielding factor in the aluminum configuration by 1-2 orders of magnitude. The addition of feedhorns provides a factor of 30 improvement when the tin/lead shield is not installed and a factor of 5 improvement when it is.

Duke Scholars

Published In

Journal of Low Temperature Physics

DOI

EISSN

1573-7357

ISSN

0022-2291

Publication Date

November 1, 2022

Volume

209

Issue

3-4

Start / End Page

667 / 676

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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Huber, Z. B., Li, Y., Vavagiakis, E. M., Choi, S. K., Connors, J., Cothard, N. F., … Zheng, K. (2022). The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module. Journal of Low Temperature Physics, 209(3–4), 667–676. https://doi.org/10.1007/s10909-022-02875-w
Huber, Z. B., Y. Li, E. M. Vavagiakis, S. K. Choi, J. Connors, N. F. Cothard, C. J. Duell, et al. “The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module.” Journal of Low Temperature Physics 209, no. 3–4 (November 1, 2022): 667–76. https://doi.org/10.1007/s10909-022-02875-w.
Huber ZB, Li Y, Vavagiakis EM, Choi SK, Connors J, Cothard NF, et al. The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module. Journal of Low Temperature Physics. 2022 Nov 1;209(3–4):667–76.
Huber, Z. B., et al. “The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module.” Journal of Low Temperature Physics, vol. 209, no. 3–4, Nov. 2022, pp. 667–76. Scopus, doi:10.1007/s10909-022-02875-w.
Huber ZB, Li Y, Vavagiakis EM, Choi SK, Connors J, Cothard NF, Duell CJ, Galitzki N, Healy E, Hubmayr J, Johnson BR, Keller B, McCarrick H, Niemack MD, Wang Y, Xu Z, Zheng K. The Simons Observatory: Magnetic Shielding Measurements for the Universal Multiplexing Module. Journal of Low Temperature Physics. 2022 Nov 1;209(3–4):667–676.
Journal cover image

Published In

Journal of Low Temperature Physics

DOI

EISSN

1573-7357

ISSN

0022-2291

Publication Date

November 1, 2022

Volume

209

Issue

3-4

Start / End Page

667 / 676

Related Subject Headings

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