Radioactive background in a cryogenic dark matter experiment

被引:19
|
作者
Tomasello, V. [1 ]
Robinson, M. [1 ]
Kudryavtsev, V. A. [1 ]
机构
[1] Univ Sheffield, Dept Phys & Astron, Sheffield S3 7RH, S Yorkshire, England
关键词
Radioactivity; Neutron background; Gamma-ray background; Dark matter; WIMPs; Monte Carlo simulations; DETECTORS; PROPAGATION; SEARCHES; MUSIC; CODE;
D O I
10.1016/j.astropartphys.2010.05.005
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
New generation dark matter experiments aim at exploring the 10(-9) 10(-10) pb cross-section region for WIMP-nucleon scalar interactions. Neutrons and gamma-rays, due to radioactive processes, are produced in the detector components and are one of the main factors that can limit detector sensitivity. Estimation of the background from this source then becomes a crucial task for designing future large-scale detectors. Radioactive background event rates from some detector components (such as copper and stainless steel), as well as from rock and concrete (lab walls), were estimated in this work for a hypothetical cryogenic dark matter detector (for instance EURECA) with a target mass of 100-1000 kg. Different shielding configurations (water, lead, polyethylene, plexiglass) were considered. Neutrons and photons were propagated to the detector using GEANT4. Some requirements for the radio-purity of the materials were deduced from the results of these simulations. Thickness of shielding in different configurations and the required gamma discrimination factor were investigated. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:70 / 79
页数:10
相关论文
共 50 条
  • [41] DEVELOPMENT OF A CRYOGENIC DARK MATTER DETECTOR
    SHUTT, T
    WANG, N
    CUMMINGS, A
    SADOULET, B
    BARNES, P
    EMES, J
    GIRAUDHERAUD, Y
    LANGE, A
    RICH, J
    ROSS, R
    BEEMAN, J
    HALLER, EE
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1990, 37 (02) : 547 - 552
  • [42] Dark matter and background light
    Overduin, JM
    Wesson, PS
    PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 2004, 402 (5-6): : 267 - 406
  • [43] The Cryogenic Dark Matter Search (CDMS II) experiment - First results from the Soudan mine
    Chang, CL
    INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 2005, 20 (14): : 3132 - 3134
  • [44] Geant4-based electromagnetic background model for the CRESST dark matter experiment
    Abdelhameed, A. H.
    Angloher, G.
    Bauer, P.
    Bento, A.
    Bertoldo, E.
    Breier, R.
    Bucci, C.
    Canonica, L.
    D'Addabbo, A.
    Di Lorenzo, S.
    Erb, A.
    v. Feilitzsch, F.
    Iachellini, N. Ferreiro
    Fichtinger, S.
    Fuss, A.
    Gorla, P.
    Hauff, D.
    Jeskovsky, M.
    Jochum, J.
    Kaizer, J.
    Kinast, A.
    Kluck, H.
    Kraus, H.
    Langenkaemper, A.
    Mancuso, M.
    Mokina, V.
    Mondragon, E.
    Olmi, M.
    Ortmann, T.
    Pagliarone, C.
    Palusova, V.
    Pattavina, L.
    Petricca, F.
    Potzel, W.
    Povinec, P.
    Proebst, F.
    Reindl, F.
    Rothe, J.
    Schaffner, K.
    Schieck, J.
    Schipperges, V.
    Schmiedmayer, D.
    Schoenert, S.
    Schwertner, C.
    Stahlberg, M.
    Stodolsky, L.
    Strandhagen, C.
    Strauss, R.
    Tuerkoglu, C.
    Usherov, I.
    EUROPEAN PHYSICAL JOURNAL C, 2019, 79 (10):
  • [45] Geant4-based electromagnetic background model for the CRESST dark matter experiment
    A. H. Abdelhameed
    G. Angloher
    P. Bauer
    A. Bento
    E. Bertoldo
    R. Breier
    C. Bucci
    L. Canonica
    A. D’Addabbo
    S. Di Lorenzo
    A. Erb
    F. v. Feilitzsch
    N. Ferreiro Iachellini
    S. Fichtinger
    A. Fuss
    P. Gorla
    D. Hauff
    M. Jes̆kovský
    J. Jochum
    J. Kaizer
    A. Kinast
    H. Kluck
    H. Kraus
    A. Langenkämper
    M. Mancuso
    V. Mokina
    E. Mondragón
    M. Olmi
    T. Ortmann
    C. Pagliarone
    V. Palus̆ová
    L. Pattavina
    F. Petricca
    W. Potzel
    P. Povinec
    F. Pröbst
    F. Reindl
    J. Rothe
    K. Schäffner
    J. Schieck
    V. Schipperges
    D. Schmiedmayer
    S. Schönert
    C. Schwertner
    M. Stahlberg
    L. Stodolsky
    C. Strandhagen
    R. Strauss
    C. Türkoğlu
    I. Usherov
    The European Physical Journal C, 2019, 79
  • [46] The PICASSO Dark Matter Experiment
    Wichoski, Ubi
    WORKSHOP ON CALCULATION OF DOUBLE-BETA-DECAY MATRIX ELEMENTS (MEDEX '11), 2011, 1417
  • [47] The ORPHEUS dark matter experiment
    Abplanalp, M
    Czapek, G
    Diggelmann, U
    Furlan, M
    Huber, D
    Janos, S
    Moser, U
    Pozzi, R
    Pretzl, K
    Schmiemann, K
    vandenBrandt, B
    Konter, JA
    Mango, S
    PerretGallix, D
    Kainer, KU
    Knoop, KM
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 1996, 370 (01): : 227 - 229
  • [48] The ORPHEUS dark matter experiment
    van den Brandt, B
    Casalbuoni, S
    Czapek, G
    Ebert, T
    Hasenbalg, F
    Hauser, M
    Janos, S
    Kainer, KU
    Knoop, KM
    Konter, JA
    Mango, S
    Moser, U
    Pretzl, K
    Sahli, B
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2000, 87 : 117 - 119
  • [49] The XENON dark matter experiment
    Shutt, T
    Aprile, E
    Baltz, E
    Giboni, K
    Majewski, P
    Yamashita, M
    Ni, K
    Oberlack, U
    Vargas
    Kwong, J
    McDonald, K
    Niemack, M
    Gaitskell, R
    Sorensen, P
    DeViveiros, L
    Craig, W
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2005, 138 : 156 - 159
  • [50] Dark matter at the SHiP experiment
    Timiryasov, Inar
    19TH INTERNATIONAL SEMINAR ON HIGH ENERGY PHYSICS (QUARKS-2016), 2016, 125