A large facility for photosensors test at cryogenic temperature

被引:1
|
作者
Balmforth, Z. [1 ,3 ]
Basco, A. [2 ]
Boiano, A. [2 ]
Canci, N. [2 ]
de Asmundis, R. [2 ]
Di Capua, F. [2 ,3 ]
Fiorillo, G. [2 ,3 ]
Grauso, G. [2 ]
Matteucci, G. [2 ,3 ]
Pandalone, A. [2 ]
Sandford, E. [3 ,4 ]
Suvorov, Y. [2 ,3 ]
Tortone, G. [2 ]
Vanzanella, A. [2 ]
机构
[1] Royal Holloway Univ London, Dept Phys, Egham TW20 0EX, England
[2] INFN Napoli, I-80126 Naples, Italy
[3] Univ Napoli Federico II, Phys Dept, I-80126 Naples, Italy
[4] Univ Manchester, Dept Phys & Astron, Manchester M13 9PL, England
关键词
Cryogenic detectors; Dark Matter detectors (WIMPs; axions; etc; Large detector systems for particle and astroparticle physics; Photon detectors for UV; visible and IR photons (solid-state) (PIN diodes; APDs; Si-PMTs; G-APDs; CCDs; EBCCDs; EMCCDs; CMOS imagers; LIQUID ARGON;
D O I
10.1088/1748-0221/18/03/C03024
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Current generation of detectors using noble gases in liquid phase for direct dark matter search and neutrino physics need large area photosensors. Silicon based photo-detectors are innovative light collecting devices and represent a successful technology in these research fields. The DarkSide collaboration started a dedicated development and customization of SiPM technology for its specific needs resulting in the design, production and assembly of large surface modules of 20 x 20 cm2 named Photo Detection Unit for the DarkSide-20k experiment. Production of a large number of such devices, as needed to cover about 20 m2 of active surface inside the DarkSide-20k detector, requires a robust testing and validation process. In order to match this requirement a dedicated test facility for photosensors was designed and commissioned at INFN-Naples laboratory. The first commissioning test was successfully performed in 2021. Since then a number of testing campaigns were performed. Detailed description of the facility is reported as well as results of some tests.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Online Cryogenic Test Software Based on EPICS for RAON SRF Test Facility
    Yoon, Sungwoon
    Lee, Sangil
    Park, Mi Jeong
    Park, In Myung
    Ki, Taekyung
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS B, 2020, 44 (08) : 511 - 517
  • [22] New Facility for the Cryogenic Test of ITER Current Leads at ASIPP
    Ding, Kaizhong
    Liu, Chenlian
    Bi, Yanfang
    Feng, Hansheng
    Du, Qingqing
    Zhou, Tingzhi
    Lu, Kun
    Song, Yuntao
    Xu, Liuwei
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (03)
  • [23] The CERN cryogenic test facility for the ATLAS barrel toroid magnets
    Haug, F
    Cambon, A
    Delruelle, N
    Orlic, JP
    Passardi, G
    Tischhauser, J
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2000, 10 (01) : 1514 - 1517
  • [24] USE OF THE TACL SYSTEM AT CEBAF FOR CONTROL OF THE CRYOGENIC TEST FACILITY
    NAVARRO, E
    KEESEE, M
    BORK, R
    GRUBB, C
    LAHTI, G
    SAGE, J
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1989, 36 (05) : 1730 - 1733
  • [25] ITER CRYOGENIC SYSTEM VALIDATION TESTS AT HELIOS TEST FACILITY
    Vallcorba, R.
    Rousset, B.
    Poncet, J-M.
    Chang, H. S.
    Forgeas, A.
    Maekawa, R.
    Serio, L.
    Bonnay, P.
    Bon-Mardion, M.
    Girard, A.
    Hoa, C.
    Lagier, B.
    Michel, F.
    Roussel, P.
    ADVANCES IN CRYOGENIC ENGINEERING, VOLS 57A AND 57B, 2012, 1434 : 1415 - 1423
  • [26] Cryogenic test facility of superconducting magnets for the accelerator complex NICA
    Nikiforov, D.
    Agapov, N.
    Khodzhibagiyan, H.
    Emelianov, N.
    Korolev, V.
    11TH EUROPEAN CONFERENCE ON APPLIED SUPERCONDUCTIVITY (EUCAS2013), PTS 1-4, 2014, 507
  • [27] A multi-purpose cryogenic test facility for astronomical instrumentation
    March, Stephen A.
    Glauser, Adrian M.
    Baer, Marcel
    Patapis, Polychronis
    ADVANCES IN OPTICAL AND MECHANICAL TECHNOLOGIES FOR TELESCOPES AND INSTRUMENTATION III, 2018, 10706
  • [28] First experimental data of the cryogenic safety test facility PICARD
    Heidt, C.
    Henriques, A.
    Stamm, M.
    Grohmann, S.
    26TH INTERNATIONAL CRYOGENIC ENGINEERING CONFERENCE & INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2016, 2017, 171
  • [29] AUTOMATIC-CONTROL OF A 0.3 M CRYOGENIC TEST FACILITY
    THIBODEAUX, JJ
    BALAKRISHNA, S
    JOURNAL OF GUIDANCE AND CONTROL, 1981, 4 (04): : 428 - 432
  • [30] Cryogenic controls for Fermilab's SRF cavities and test facility
    Norris, B.
    Bossert, R.
    Klebaner, A.
    Lackey, S.
    Martinez, A.
    Pei, L.
    Soyars, W.
    Sirotenko, V.
    ADVANCES IN CRYOGENIC ENGINEERING, VOLS 53A AND 53B, 2008, 985 : 989 - 996