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    TES Bolometer Arrays for the QUBIC B-Mode CMB Experiment


    Marnieros, S., Ade, P., Alberro, J. G., Almela, A., Amico, G., Arnaldi, L. H., Auguste, D., Aumont, J., Azzoni, S., Banfi, S., Battaglia, P., Battistelli, E. S., Baù, A., Bélier, B., Bennett, D., Bergé, L., Bernard, J.-P., Bersanelli, M., Bigot-Sazy, M.-A., Bleurvacq, N., Bonaparte, J., Bonis, J., Bottani, A., Bunn, E., Burke, D., Buzi, D., Cavaliere, F., Chanial, P., Chapron, C., Charlassier, R., Columbro, F., Coppolecchia, A., D’Alessandro, G., de Bernardis, P., De Gasperis, G., De Leo, M., De Petris, M., Dheilly, S., Dumoulin, L., Etchegoyen, A., Fasciszewski, A., Ferreyro, L. P., Fracchia, D., Franceschet, C., Gamboa Lerena, M. M., Ganga, K., García, B., García Redondo, M. E., Gaspard, M., Gayer, D., Gervasi, M., Giard, M., Gilles, V., Giraud-Heraud, Y., Gómez Berisso, M., González, M., Gradziel, M., Grandsire, L., Hamilton, J.-Ch., Harari, D., Henrot-Versillé, S., Hoang, D. T., Incardona, F., Jules, E., Kaplan, J., Kristukat, C., Lamagna, L., Loucatos, S., Louis, T., Maffei, B., Marty, W., Masi, S., Mattei, A., May, A., McCulloch, M., Mele, L., Melhuish, S., Mennella, A., Montier, L., Mousset, L., Mundo, L. M., Murphy, J. A., Murphy, J. D., Nati, F., Olivieri, E., Oriol, C., O’Sullivan, C., Paiella, A., Pajot, F., Passerini, A., Pastoriza, H., Pelosi, A., Perbost, C., Perciballi, M., Pezzotta, F., Piacentini, F., Piat, M., Piccirillo, L., Pisano, G., Platino, M., Polenta, G., Prêle, D., Puddu, R., Rambaud, D., Ringegni, P., Romero, G. E., Salatino, M., Salum, J. M., Schillaci, A., Scóccola, C., Scully, S., Spinelli, S., Stankowiak, G., Stolpovskiy, M., Tartari, A., Thermeau, J.-P., Timbie, P., Tomasi, M., Torchinsky, S., Tucker, G., Tucker, C., Viganò, D., Vittorio, N., Voisin, F., Wicek, F., Zannoni, M. and Zullo, A. (2020) TES Bolometer Arrays for the QUBIC B-Mode CMB Experiment. Journal of Low Temperature Physics, 199 (3-4). pp. 955-961. ISSN 0022-2291

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    Abstract

    QUBIC is a ground-based experiment aiming to measure the B-mode polarization of the cosmic microwave background. The developed instrument is an innovative two frequency band bolometric interferometer that will operate at 300 mK with NbSi TES arrays. In this paper, we describe the fabrication process of the detectors.
    Item Type: Article
    Additional Information: Cite as: Marnieros, S., Ade, P., Alberro, J.G. et al. TES Bolometer Arrays for the QUBIC B-Mode CMB Experiment. J Low Temp Phys 199, 955–961 (2020). https://doi.org/10.1007/s10909-019-02304-5
    Keywords: Cryogenic detectors; Cosmic microwave background; Transition edge; sensors;
    Academic Unit: Faculty of Science and Engineering > Experimental Physics
    Item ID: 15928
    Identification Number: 10.1007/s10909-019-02304-5
    Depositing User: Dr. Marcin Lukasz Gradziel
    Date Deposited: 05 May 2022 12:00
    Journal or Publication Title: Journal of Low Temperature Physics
    Publisher: Springer link
    Refereed: Yes
    Related URLs:
    URI: https://mural.maynoothuniversity.ie/id/eprint/15928
    Use Licence: This item is available under a Creative Commons Attribution Non Commercial Share Alike Licence (CC BY-NC-SA). Details of this licence are available here

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