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MaGe: a Monte Carlo framework for the Gerda and Majorana double beta decay experiments

M Bauer, S Belogurov, Yd Chan, M Descovich, J Detwiler, M Di Marco, B Fujikawa, D Franco, V Gehman, R Henning, K Hudek, R Johnson, D Jordan, K Kazkaz, A Klimenko, M Knapp, K Kroeninger, K Lesko, X Liu, M Marino, A Mokhtarani, L Pandola1,2, M Perry, A Poon, D Radford, C Tomei and C Tull

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The Gerda [1] and Majorana [2] projects, both searching for the neutrinoless double beta-decay of 76Ge, are developing a joint Monte-Carlo simulation framework called MaGe. Such an approach has many benefits: the workload for the development of general tools is shared between more experts, the code is tested in more detail, and more experimental data is made available for validation.


PACS

23.40.-s Beta decay; double beta decay; electron and muon capture

02.50.Ng Distribution theory and Monte Carlo studies

29.40.Wk Solid-state detectors

Subjects

Computational physics

Accelerators, beams and electromagnetism

Instrumentation and measurement

Nuclear physics

Particle physics and field theory

Dates

Issue 1 (2006)



  1. MaGe: a Monte Carlo framework for the Gerda and Majorana double beta decay experiments

    M Bauer et al 2006 J. Phys.: Conf. Ser. 39 362

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  8. A Constraint on Brown Dwarf Formation Via Ejection: Radial Variation of the Stellar and Substellar Mass Function of the Young Open Cluster IC 2391

    S. Boudreault and C. A. L. Bailer-Jones 2009 ApJ 706 1484

  9. Message from the Editor-in-Chief

    Noah Hershkowitz 2004 Plasma Sources Sci. Technol. 13

  10. Study of the x-ray emission scaling law in a low energy plasma focus

    M Sharif et al 2004 Plasma Sources Sci. Technol. 13 B7

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