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The SABRE project and the SABRE proof-of-principle

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posted on 2024-08-06, 11:59 authored by M. Antonello, E. Barberio, T. Baroncelli, J. Benziger, L. J. Bignell, I. Bolognino, F. Calaprice, S. Copello, D. D’angelo, G. D’imperio, I. Dafinei, G. Dicarlo, M. Diemoz, A. Di Ludovico, W. Dix, Alan DuffyAlan Duffy, F. Froborg, G. K. Giovanetti, E. Hoppe, A. Ianni, L. Ioannucci, Shanti KrishnanShanti Krishnan, G. J. Lane, I. Mahmood, A. Mariani, M. Mastrodicasa, P. Montini, Jeremy MouldJeremy Mould, F. Nuti, D. Orlandi, M. Paris, V. Pettinacci, L. Pietrofaccia, D. Prokopovic, S. Rahatlou, N. Rossi, A. Sarbutt, E. Shields, M. J. Souza, A. E. Stuchbery, B. Suerfu, C. Tomei, V. Toso, P. Urquijo, C. Vignoli, M. Wada, A. Wallner, A. G. Williams, J. Xu
SABRE aims to directly measure the annual modulation of the dark matter interaction rate with NaI(Tl) crystals. A modulation compatible with the standard hypothesis, in which our Galaxy is immersed in a dark matter halo, has been measured by the DAMA experiment in the same target material. Other direct detection experiments, using different target materials, seem to exclude the interpretation of such modulation in the simplest scenario of WIMP-nucleon elastic scattering. The SABRE experiment aims to carry out an independent search with sufficient sensitivity to confirm or refute the DAMA claim. The goal of the SABRE experiment is to achieve the lowest background rate for a NaI(Tl) experiment (order of 0.1 cpd/kg/keV(ee) in the energy region of interest for dark matter). This challenging goal could be achievable by operating high-purity crystals inside a liquid scintillator veto for active background rejection. In addition, twin detectors will be located in the northern and southern hemispheres to identify possible contributions to the modulation from seasonal or site-related effects. The SABRE project includes an initial Proof-of-Principle phase at LNGS (Italy), to assess the radio-purity of the crystals and the efficiency of the liquid scintillator veto. This paper describes the general concept of SABRE and the expected sensitivity to WIMP annual modulation.

Funding

Full scale detector system for dark matter

Australian Research Council

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Detector system for the First Australian Experiment on Dark Matter

Australian Research Council

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Stawell Underground Physics Laboratory: Dark matter detector development

Australian Research Council

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Australia’s first direct-detection dark matter search, at Stawell Gold Mine

Australian Research Council

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History

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PDF (Published version)

ISSN

1434-6052

Journal title

European Physical Journal C

Volume

79

Issue

4

Article number

article no. 363

Pagination

363-

Publisher

Springer Berlin Heidelberg

Copyright statement

Copyright © The Author(s) 2019. Open Access. This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.

Language

eng

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