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spelling ftunivcardiff:oai:https://orca.cardiff.ac.uk:111762 2023-05-15T18:22:18+02:00 Fabrication of detector arrays for the SPT-3G receiver Posada, C. M. Ade, Peter A. R. Ahmed, Z. Anderson, A. J. Austermann, J. E. Avva, J. S. Thakur, R. Basu Bender, A. N. Benson, B. A. Carlstrom, J. E. Carter, F. W. Cecil, T. Chang, C. L. Cliche, J. F. Cukierman, A. Denison, E. V. de Haan, T. Ding, J. Divan, R. Dobbs, M. A. Dutcher, D. Everett, W. Foster, A. Gannon, R. N. Gilbert, A. Groh, J. C. Halverson, N. W. Harke-Hosemann, A. H. Harrington, N. L. Henning, J. W. Hilton, G. C. Holzapfel, W. L. Huang, N. Irwin, K. D. Jeong, O. B. Jonas, M. Khaire, T. Kofman, A. M. Korman, M. Kubik, D. Kuhlmann, S. Kuo, C. L. Lee, A. T. Lowitz, A. E. Meyer, S. S. Michalik, D. Miller, C. S. Montgomery, J. Nadolski, A. Natoli, T. 2018-12-01 application/pdf https://orca.cardiff.ac.uk/id/eprint/111762/ https://doi.org/10.1007/s10909-018-1924-1 https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf en eng Springer https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf Posada, C. M., Ade, Peter A. R. https://orca.cardiff.ac.uk/view/cardiffauthors/A0479492.html orcid:0000-0002-5127-0401 orcid:0000-0002-5127-0401, Ahmed, Z., Anderson, A. J., Austermann, J. E., Avva, J. S., Thakur, R. Basu, Bender, A. N., Benson, B. A., Carlstrom, J. E., Carter, F. W., Cecil, T., Chang, C. L., Cliche, J. F., Cukierman, A., Denison, E. V., de Haan, T., Ding, J., Divan, R., Dobbs, M. A., Dutcher, D., Everett, W., Foster, A., Gannon, R. N., Gilbert, A., Groh, J. C., Halverson, N. W., Harke-Hosemann, A. H., Harrington, N. L., Henning, J. W., Hilton, G. C., Holzapfel, W. L., Huang, N., Irwin, K. D., Jeong, O. B., Jonas, M., Khaire, T., Kofman, A. M., Korman, M., Kubik, D., Kuhlmann, S., Kuo, C. L., Lee, A. T., Lowitz, A. E., Meyer, S. S., Michalik, D., Miller, C. S., Montgomery, J., Nadolski, A., Natoli, T., Nguyen, H., Noble, G. I., Novosad, V., Padin, S., Pan, Z., Pearson, J., Rahlin, A., Ruhl, J. E., Saunders, L. J., Sayre, J. T., Shirley, I., Shirokoff, E., Smecher, G., Sobrin, J. A., Stan, L., Stark, A. A., Story, K. T., Suzuki, A., Tang, Q. Y., Thompson, K. L., Tucker, Carole https://orca.cardiff.ac.uk/view/cardiffauthors/A016987K.html orcid:0000-0002-1851-3918 orcid:0000-0002-1851-3918, Vale, L. R., Vanderlinde, K., Vieira, J. D., Wang, G., Whitehorn, N., Yefremenko, V., Yoon, K. W. and Young, M. R. 2018. Fabrication of detector arrays for the SPT-3G receiver. Journal of Low Temperature Physics 193 (5-6) , pp. 703-711. 10.1007/s10909-018-1924-1 https://doi.org/10.1007/s10909-018-1924-1 file https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf doi:10.1007/s10909-018-1924-1 Article PeerReviewed 2018 ftunivcardiff https://doi.org/10.1007/s10909-018-1924-1 2022-10-27T22:44:12Z The South Pole Telescope third-generation (SPT-3G) receiver was installed during the austral summer of 2016–2017. It is designed to measure the cosmic microwave background across three frequency bands centered at 95, 150, and 220 GHz. The SPT-3G receiver has ten focal plane modules, each with 269 pixels. Each pixel features a broadband sinuous antenna coupled to a niobium microstrip transmission line. In-line filters define the desired band-passes before the signal is coupled to six bolometers with Ti/Au/Ti/Au transition edge sensors (three bands × × two polarizations). In total, the SPT-3G receiver is composed of 16,000 detectors, which are read out using a 68× × frequency-domain multiplexing scheme. In this paper, we present the process employed in fabricating the detector arrays. Article in Journal/Newspaper South pole Cardiff University: ORCA (Online Research @ Cardiff) Austral South Pole Journal of Low Temperature Physics 193 5-6 703 711
institution Open Polar
collection Cardiff University: ORCA (Online Research @ Cardiff)
op_collection_id ftunivcardiff
language English
description The South Pole Telescope third-generation (SPT-3G) receiver was installed during the austral summer of 2016–2017. It is designed to measure the cosmic microwave background across three frequency bands centered at 95, 150, and 220 GHz. The SPT-3G receiver has ten focal plane modules, each with 269 pixels. Each pixel features a broadband sinuous antenna coupled to a niobium microstrip transmission line. In-line filters define the desired band-passes before the signal is coupled to six bolometers with Ti/Au/Ti/Au transition edge sensors (three bands × × two polarizations). In total, the SPT-3G receiver is composed of 16,000 detectors, which are read out using a 68× × frequency-domain multiplexing scheme. In this paper, we present the process employed in fabricating the detector arrays.
format Article in Journal/Newspaper
author Posada, C. M.
Ade, Peter A. R.
Ahmed, Z.
Anderson, A. J.
Austermann, J. E.
Avva, J. S.
Thakur, R. Basu
Bender, A. N.
Benson, B. A.
Carlstrom, J. E.
Carter, F. W.
Cecil, T.
Chang, C. L.
Cliche, J. F.
Cukierman, A.
Denison, E. V.
de Haan, T.
Ding, J.
Divan, R.
Dobbs, M. A.
Dutcher, D.
Everett, W.
Foster, A.
Gannon, R. N.
Gilbert, A.
Groh, J. C.
Halverson, N. W.
Harke-Hosemann, A. H.
Harrington, N. L.
Henning, J. W.
Hilton, G. C.
Holzapfel, W. L.
Huang, N.
Irwin, K. D.
Jeong, O. B.
Jonas, M.
Khaire, T.
Kofman, A. M.
Korman, M.
Kubik, D.
Kuhlmann, S.
Kuo, C. L.
Lee, A. T.
Lowitz, A. E.
Meyer, S. S.
Michalik, D.
Miller, C. S.
Montgomery, J.
Nadolski, A.
Natoli, T.
spellingShingle Posada, C. M.
Ade, Peter A. R.
Ahmed, Z.
Anderson, A. J.
Austermann, J. E.
Avva, J. S.
Thakur, R. Basu
Bender, A. N.
Benson, B. A.
Carlstrom, J. E.
Carter, F. W.
Cecil, T.
Chang, C. L.
Cliche, J. F.
Cukierman, A.
Denison, E. V.
de Haan, T.
Ding, J.
Divan, R.
Dobbs, M. A.
Dutcher, D.
Everett, W.
Foster, A.
Gannon, R. N.
Gilbert, A.
Groh, J. C.
Halverson, N. W.
Harke-Hosemann, A. H.
Harrington, N. L.
Henning, J. W.
Hilton, G. C.
Holzapfel, W. L.
Huang, N.
Irwin, K. D.
Jeong, O. B.
Jonas, M.
Khaire, T.
Kofman, A. M.
Korman, M.
Kubik, D.
Kuhlmann, S.
Kuo, C. L.
Lee, A. T.
Lowitz, A. E.
Meyer, S. S.
Michalik, D.
Miller, C. S.
Montgomery, J.
Nadolski, A.
Natoli, T.
Fabrication of detector arrays for the SPT-3G receiver
author_facet Posada, C. M.
Ade, Peter A. R.
Ahmed, Z.
Anderson, A. J.
Austermann, J. E.
Avva, J. S.
Thakur, R. Basu
Bender, A. N.
Benson, B. A.
Carlstrom, J. E.
Carter, F. W.
Cecil, T.
Chang, C. L.
Cliche, J. F.
Cukierman, A.
Denison, E. V.
de Haan, T.
Ding, J.
Divan, R.
Dobbs, M. A.
Dutcher, D.
Everett, W.
Foster, A.
Gannon, R. N.
Gilbert, A.
Groh, J. C.
Halverson, N. W.
Harke-Hosemann, A. H.
Harrington, N. L.
Henning, J. W.
Hilton, G. C.
Holzapfel, W. L.
Huang, N.
Irwin, K. D.
Jeong, O. B.
Jonas, M.
Khaire, T.
Kofman, A. M.
Korman, M.
Kubik, D.
Kuhlmann, S.
Kuo, C. L.
Lee, A. T.
Lowitz, A. E.
Meyer, S. S.
Michalik, D.
Miller, C. S.
Montgomery, J.
Nadolski, A.
Natoli, T.
author_sort Posada, C. M.
title Fabrication of detector arrays for the SPT-3G receiver
title_short Fabrication of detector arrays for the SPT-3G receiver
title_full Fabrication of detector arrays for the SPT-3G receiver
title_fullStr Fabrication of detector arrays for the SPT-3G receiver
title_full_unstemmed Fabrication of detector arrays for the SPT-3G receiver
title_sort fabrication of detector arrays for the spt-3g receiver
publisher Springer
publishDate 2018
url https://orca.cardiff.ac.uk/id/eprint/111762/
https://doi.org/10.1007/s10909-018-1924-1
https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf
geographic Austral
South Pole
geographic_facet Austral
South Pole
genre South pole
genre_facet South pole
op_relation https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf
Posada, C. M., Ade, Peter A. R. https://orca.cardiff.ac.uk/view/cardiffauthors/A0479492.html orcid:0000-0002-5127-0401 orcid:0000-0002-5127-0401, Ahmed, Z., Anderson, A. J., Austermann, J. E., Avva, J. S., Thakur, R. Basu, Bender, A. N., Benson, B. A., Carlstrom, J. E., Carter, F. W., Cecil, T., Chang, C. L., Cliche, J. F., Cukierman, A., Denison, E. V., de Haan, T., Ding, J., Divan, R., Dobbs, M. A., Dutcher, D., Everett, W., Foster, A., Gannon, R. N., Gilbert, A., Groh, J. C., Halverson, N. W., Harke-Hosemann, A. H., Harrington, N. L., Henning, J. W., Hilton, G. C., Holzapfel, W. L., Huang, N., Irwin, K. D., Jeong, O. B., Jonas, M., Khaire, T., Kofman, A. M., Korman, M., Kubik, D., Kuhlmann, S., Kuo, C. L., Lee, A. T., Lowitz, A. E., Meyer, S. S., Michalik, D., Miller, C. S., Montgomery, J., Nadolski, A., Natoli, T., Nguyen, H., Noble, G. I., Novosad, V., Padin, S., Pan, Z., Pearson, J., Rahlin, A., Ruhl, J. E., Saunders, L. J., Sayre, J. T., Shirley, I., Shirokoff, E., Smecher, G., Sobrin, J. A., Stan, L., Stark, A. A., Story, K. T., Suzuki, A., Tang, Q. Y., Thompson, K. L., Tucker, Carole https://orca.cardiff.ac.uk/view/cardiffauthors/A016987K.html orcid:0000-0002-1851-3918 orcid:0000-0002-1851-3918, Vale, L. R., Vanderlinde, K., Vieira, J. D., Wang, G., Whitehorn, N., Yefremenko, V., Yoon, K. W. and Young, M. R. 2018. Fabrication of detector arrays for the SPT-3G receiver. Journal of Low Temperature Physics 193 (5-6) , pp. 703-711. 10.1007/s10909-018-1924-1 https://doi.org/10.1007/s10909-018-1924-1 file https://orca.cardiff.ac.uk/id/eprint/111762/1/JLTP_CP_FINAL_REV.pdf
doi:10.1007/s10909-018-1924-1
op_doi https://doi.org/10.1007/s10909-018-1924-1
container_title Journal of Low Temperature Physics
container_volume 193
container_issue 5-6
container_start_page 703
op_container_end_page 711
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