Electromagnetic Backgrounds and Potassium-42 Activity in the DEAP-3600 Dark Matter Detector
Abstract
The DEAP-3600 experiment is searching for WIMP dark matter with a 3.3 tonne single phase liquid argon (LAr) target, located 2.1 km underground at SNOLAB. The experimental signature of dark matter interactions is keV-scale Ar nuclear recoils (NR) producing 128 nm LAr scintillation photons observed by PMTs. The largest backgrounds in DEAP-3600 are electronic recoils (ER) induced by and -rays originating from internal and external radioactivity in the detector material. A background model of the ER interactions in DEAP-3600 was developed and is described in this work. The model is based on several components which are expected from radioisotopes in the LAr, from ex-situ material assay measurements, and from dedicated independent in-situ analyses. This prior information is used in a Bayesian fit of the ER components to a 247.2 d dataset to model the radioactivity in the surrounding detector materials. While excellent discrimination between ERs and NRs is reached with pulse shape discrimination, utilizing the large difference between fast and slow components of LAr scintillation light, detailed knowledge of the ER background and activity of detector components, sets valuable constraints on other key types of backgrounds in the detector: neutrons and alphas. In addition, the activity of Ar in LAr in DEAP-3600 is determined by measuring the daughter decay of K. This cosmogenically activated trace isotope is a relevant background at higher energies for other rare event searches using atmospheric argon e.g. DarkSide-20k, GERDA or LEGEND. The specific activity of Ar in the atmosphere is found to be Bq/kg of argon.
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Cite
@article{arxiv.1905.05811,
title = {Electromagnetic Backgrounds and Potassium-42 Activity in the DEAP-3600 Dark Matter Detector},
author = {R. Ajaj and G. R. Araujo and M. Batygov and B. Beltran and C. E. Bina and M. G. Boulay and B. Broerman and J. F. Bueno and P. M. Burghardt and A. Butcher and M. Cárdenas-Montes and S. Cavuoti and M. Chen and Y. Chen and B. T. Cleveland and K. Dering and F. A. Duncan and M. Dunford and A. Erlandson and N. Fatemighomi and G. Fiorillo and A. Flower and R. J. Ford and D. Gallacher and P. García Abia and S. Garg and P. Giampa and D. Goeldi and V. V. Golovko and P. Gorel and K. Graham and D. R. Grant and A. L. Hallin and M. Hamstra and P. J. Harvey and C. Hearns and A. Joy and C. J. Jillings and O. Kamaev and G. Kaur and A. Kemp and I. Kochanek and M. Kuźniak and S. Langrock and F. La Zia and B. Lehnert and X. Li and O. Litvinov and J. Lock and G. Longo and P. Majewski and A. B. McDonald and T. McElroy and T. McGinn and J. B. McLaughlin and R. Mehdiyev and C. Mielnichuk and J. Monroe and P. Nadeau and C. Nantais and C. Ng and A. J. Noble and C. Ouellet and P. Pasuthip and S. J. M. Peeters and V. Pesudo and M. -C. Piro and T. R. Pollmann and E. T. Rand and C. Rethmeier and F. Retière and E. Sanchez García and R. Santorelli and N. Seeburn and P. Skensved and B. Smith and N. J. T. Smith and T. Sonley and R. Stainforth and C. Stone and V. Strickland and B. Sur and E. Vázquez-Jáuregui and L. Veloce and S. Viel and J. Walding and M. Waqar and M. Ward and S. Westerdale and J. Willis and A. Zuñiga-Reyes},
journal= {arXiv preprint arXiv:1905.05811},
year = {2019}
}