Measurement of the Gamma Ray Background in the Davis Cavern at the Sanford Underground Research Facility

Autor: A. Biekert, V. A. Kudryavtsev, M. G. D. van der Grinten, C. M. Ignarra, Henrique Araujo, D. Seymour, E. Leason, B. Boxer, A. Naylor, J. McLaughlin, J. Y.K. Hor, A. Murphy, J. E. Cutter, J. Reichenbacher, C. R. Hall, G. Pereira, M. Horn, C. D. Kocher, K. Pushkin, X. Bai, J. Johnson, D. Q. Huang, H. Kraus, C. Carels, X. Liu, J. M. Lyle, T. K. Edberg, A. Lindote, T. Fruth, M. C. Carmona-Benitez, Q. Riffard, L. Kreczko, D. Woodward, M. F. Marzioni, T.M. Stiegler, Juhyeong Lee, T. P. Biesiadzinski, A. Cottle, A. Tomás, S. Balashov, W.T. Kim, F. Neves, K. E. Boast, A. B.M.R. Sazzad, L. Korley, K. Kamdin, Murdock Gilchriese, David Leonard, Robert A. Taylor, Catarina Silva, C. E. Dahl, M. E. Monzani, A. Angelides, D. Temples, P. Brás, M. Solmaz, A. Manalaysay, D. Khaitan, P. Majewski, E. Morrison, T. J. Whitis, Matthew Szydagis, J. Genovesi, J.P. Rodrigues, J. Busenitz, Benjamin Krikler, A. Fan, C. Rhyne, R. J. Gaitskell, J. E. Armstrong, A. Stevens, Ethan Bernard, Bjoern Penning, Michael Schubnell, J. H. Buckley, Ross G. White, I. Stancu, L. Tvrznikova, P.R. Scovell, Daniel McKinsey, W. Ji, K. J. Palladino, I. Olcina, J. A. Morad, H. N. Nelson, N. Marangou, J. A. Nikoleyczik, R. L. Mannino, Michele Cascella, Sergey Burdin, A. Baxter, C. Nedlik, C. Ghag, P. Rossiter, C. Chan, M.I. Lopes, E. K. Pease, V. Bugaev, S. Kravitz, V. N. Solovov, S. Gokhale, S. Alsum, Julie Harrison, K. C. Oliver-Mallory, J. R. Watson, C. Levy, E. H. Miller, F.-T. Liao, S. Luitz, J. Lin, J. Yin, A. Piepke, S. Hans, J. Liao, S. J. Haselschwardt, F. L. H. Wolfs, A. Nilima, S. Uvarov, G. Rutherford, D. R. Tiedt, J. Kras, R. Linehan, Laura Manenti, K. T. Lesko, D. Naim, B. J. Mount, D. S. Akerib, T. A. Shutt, J. J. Wang, J. E. Y. Dobson, L.D. Viveiros, C. Loniewski, S. Shaw, Wolfgang Lorenzon, Elena Korolkova, H. Flaecher, M. Timalsina, O. Jahangir, P. Sorensen, Yue Meng, W.H. Lippincott, A. Cole, K. Stifter, S. Fiorucci, P. A. Terman, R. Liu, Richard Rosero, R. C. Webb, Antonin Vacheret, M. Arthurs, A. Khazov, J.J. Silk, W. C. Taylor, J. Balajthy, A. C. Kaboth, B.L. Paredes, R. W. Schnee, S. Pal, G.R.C. Rischbieter, C. Nehrkorn, S. A. Hertel, E. Druszkiewicz, U. Utku, Mani Tripathi, J. Li, Carl W. Akerlof, Duncan Carlsmith
Přispěvatelé: Science and Technology Facilities Council (STFC)
Jazyk: angličtina
Rok vydání: 2020
Předmět:
Zdroj: Murphy, A & The LUX-ZEPLIN (LZ) Collaboration 2020, ' Measurement of the Gamma Ray Background in the Davis Cavern at the Sanford Underground Research Facility ', Astroparticle Physics, vol. 116 . https://doi.org/10.1016/j.astropartphys.2019.102391
BASE-Bielefeld Academic Search Engine
Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Agência para a Sociedade do Conhecimento (UMIC)-FCT-Sociedade da Informação
instacron:RCAAP
ISSN: 0927-6505
Popis: Deep underground environments are ideal for low background searches due to the attenuation of cosmic rays by passage through the earth. However, they are affected by backgrounds from $\gamma$-rays emitted by $^{40}$K and the $^{238}$U and $^{232}$Th decay chains in the surrounding rock. The LUX-ZEPLIN (LZ) experiment will search for dark matter particle interactions with a liquid xenon TPC located within the Davis campus at the Sanford Underground Research Facility, Lead, South Dakota, at the 4,850-foot level. In order to characterise the cavern background, in-situ $\gamma$-ray measurements were taken with a sodium iodide detector in various locations and with lead shielding. The integral count rates (0--3300~keV) varied from 596~Hz to 1355~Hz for unshielded measurements, corresponding to a total flux in the cavern of $1.9\pm0.4$~$\gamma~$cm$^{-2}$s$^{-1}$. The resulting activity in the walls of the cavern can be characterised as $220\pm60$~Bq/kg of $^{40}$K, $29\pm15$~Bq/kg of $^{238}$U, and $13\pm3$~Bq/kg of $^{232}$Th.
Comment: 11 pages, 9 figures
Databáze: OpenAIRE