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    Measurements of neutrons produced by high-energy muons at the Boulby Underground Laboratory

    Access Status
    Fulltext not available
    Authors
    Araújo, H.
    Blockley, J.
    Bungau, C.
    Carson, Michael
    Chagani, H.
    Daw, E.
    Edwards, B.
    Ghag, C.
    Korolkova, E.
    Kudryavtsev, V.
    Lightfoot, P.
    Lindote, A.
    Liubarsky, I.
    Lüscher, R.
    Majewski, P.
    Mavrokoridis, K.
    McMillan, J.
    Murphy, A.
    Paling, S.
    Pinto da Cunha, J.
    Preece, R.
    Robinson, M.
    Smith, N.
    Smith, P.
    Spooner, N.
    Sumner, T.
    Walker, R.
    Wang, H.
    White, J.
    Date
    2008
    Type
    Journal Article
    
    Metadata
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    Citation
    Araújo, H. and Blockley, J. and Bungau, C. and Carson, M. and Chagani, H. and Daw, E. and Edwards, B. et al. 2008. Measurements of neutrons produced by high-energy muons at the Boulby Underground Laboratory. Astroparticle Physics. 29 (6): pp. 471-481.
    Source Title
    Astroparticle Physics
    DOI
    10.1016/j.astropartphys.2008.05.004
    ISSN
    0927-6505
    School
    Department of Exploration Geophysics
    URI
    http://hdl.handle.net/20.500.11937/16394
    Collection
    • Curtin Research Publications
    Abstract

    We present the first measurements of the muon-induced neutron flux at the Boulby Underground Laboratory. The experiment was carried out with an 0.73 tonne liquid scintillator that also served as an anticoincidence system for the ZEPLIN-II direct dark matter search. The experimental method exploited the delayed coincidences between high-energy muon signals and gamma-rays from radiative neutron capture on hydrogen or other elements. The muon-induced neutron rate, defined as the average number of detected neutrons per detected muon, was measured as 0.079 ± 0.003 (stat.) neutrons/muon using neutron-capture signals above 0.55 MeV in a time window of 40-190 µs after the muon trigger. Accurate Monte Carlo simulations of the neutron production, transport and detection in a precisely modeled laboratory and experimental setup using the GEANT4 toolkit gave a result 1.8 times higher than the measured value. The difference greatly exceeds all statistical and systematic uncertainties. As the vast majority of neutrons detected in the current setup were produced in lead we evaluated from our measurements the neutron yield in lead as (1.31 ± 0.06) × 10- 3 neutrons/muon/(g/cm2) for a mean muon energy of about 260 GeV. © 2008 Elsevier B.V. All rights reserved.

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