3.8 Proceedings Paper

Initial Results from the MAJORANA DEMONSTRATOR

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IOP PUBLISHING LTD
DOI: 10.1088/1742-6596/888/1/012035

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资金

  1. U.S. Department of Energy, Office of Science, Office of Nuclear Physics [DE-AC02-05CH11231, DE-AC52-06NA25396, DE-FG02-97ER41041, DE-FG02-97ER41033, DE-FG02-97ER41042, DE-SC0012612, DE-FG02-10ER41715, DE-SC0010254, DE-FG02-97ER41020]
  2. National Science Foundation [PHY-0919270, PHY-1003940, 0855314, PHY-1202950, MRI 0923142, 1003399]
  3. Russian Foundation for Basic Research [15-02-02919]
  4. U.S. Department of Energy through the LANL/LDRD Program
  5. DOE Office of Science User Facility [DE-AC05-000R22725]
  6. National Energy Research Scientific Computing Center, a DOE Office of Science User Facility [DE-AC02-05CH11231]
  7. U.S. Department of Energy (DOE) [DE-SC0012612, DE-SC0010254] Funding Source: U.S. Department of Energy (DOE)

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Neutrinoless double-beta decay searches seek to determine the nature of neutrinos, the existence of a lepton violating process, and the effective Majorana neutrino mass. The MAJORANA Collaboration is assembling an array of high purity Ge detectors to search for neutrinoless double-beta decay in Ge-76. The MAJORANA DEMONSTRATOR is composed of 44.8 kg (29.7 kg enriched in Ge-76) of Ge detectors in total, split between two modules contained in a low background shield at the Sanford Underground Research Facility in Lead, South Dakota. The initial goals of the DEMONSTRATOR are to establish the required background and scalability of a Ge-based, next-generation, tonne-scale experiment. Following a commissioning run that began in 2015, the first detector module started physics data production in early 2016. We will discuss initial results of the Module 1 commissioning and first physics run, as well as the status and potential physics reach of the full MAJORANA DEMONSTRATOR experiment. The collaboration plans to complete the assembly of the second detector module by mid-2016 to begin full data production with the entire array.

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