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Featured researches published by A. Domula.


arXiv: Instrumentation and Detectors | 2017

The Large Enriched Germanium Experiment for Neutrinoless Double Beta Decay (LEGEND)

N. Abgrall; A. Abramov; N. Abrosimov; I. Abt; M. Agostini; M. Agartioglu; A. Ajjaq; S. I. Alvis; F. T. Avignone; X. Bai; M. Balata; I. Barabanov; A. S. Barabash; P. J. Barton; L. Baudis; L. Bezrukov; T. Bode; A. Bolozdynya; D. Borowicz; A. J. Boston; H. Boston; S. T.P. Boyd; R. Breier; V. Brudanin; R. Brugnera; M. Busch; M. Buuck; A. Caldwell; T. S. Caldwell; T. Camellato

The observation of neutrinoless double-beta decay (0νββ) would show that lepton number is violated, reveal that neu-trinos are Majorana particles, and provide information on neutrino mass. A discovery-capable experiment covering the inverted ordering region, with effective Majorana neutrino masses of 15 - 50 meV, will require a tonne-scale experiment with excellent energy resolution and extremely low backgrounds, at the level of ∼0.1 count /(FWHM·t·yr) in the region of the signal. The current generation 76Ge experiments GERDA and the Majorana Demonstrator, utilizing high purity Germanium detectors with an intrinsic energy resolution of 0.12%, have achieved the lowest backgrounds by over an order of magnitude in the 0νββ signal region of all 0νββ experiments. Building on this success, the LEGEND collaboration has been formed to pursue a tonne-scale 76Ge experiment. The collaboration aims to develop a phased 0νββ experimental program with discovery potential at a half-life approaching or at 1028 years, using existing resources as appropriate to expedite physics results.


Archive | 2013

Results on neutrinoless double beta decay of 76 Ge from Gerda Phase I

M. Agostini; M. Allardt; E. Andreotti; M. Balata; I. Barabanov; A. Caldwell; C. Cattadori; A. Chernogorov; F. Cossavella; A. Domula; V. Egorov; R. Falkenstein; A. D. Ferella; K. Freund; N. Frodyma; A. M. Gangapshev; A. Garfagnini; C. Gotti; P. Grabmayr; K. Gusev; W. Hampel; A. Hegai; M. Heisel; S. Hemmer; G. Heusser; W. Hofmann; M. Hult; L. Ioannucci; J. Janicsk; J. Jochum


Archive | 2015

Production, characterization and operation of 76Ge enriched BEGe detectors in GERDA: GERDA Collaboration - eScholarship

M. Agostini; M. Allardt; E. Andreotti; A. M. Bakalyarov; M. Balata; I. Barabanov; N. Barros; L. Baudis; C. Bauer; N. Becerici-Schmidt; E. Bellotti; S. Belogurov; S. T. Belyaev; G. Benato; A. Bettini; L. Bezrukov; T. Bode; D. Borowicz; Brudanin; R. Brugnera; D. Budjáš; A. Caldwell; C. Cattadori; A. Chernogorov; D Andrea; E. V. Demidova; A. Domula; Egorov; R. Falkenstein; K. Freund


KnE Energy | 2018

New Data Release of GERDA Phase II: Search for 0νββ Decay of 76Ge

M. Agostini; A. M. Bakalyarov; M. Balata; I. Barabanov; L. Baudis; C. Bauer; E. Bellotti; S. Belogurov; A. Bettini; L. Bezrukov; T. Bode; V. Brudanin; R. Brugnera; A. Caldwell; C. Cattadori; A. Chernogorov; V. D’Andrea; E. V. Demidova; N. Di Marco; A. Domula; E. Doroshkevich; V. Egorov; R. Falkenstein; A. M. Gangapshev; A. Garfagnini; C. Gooch; P. Grabmayr; V. Gurentsov; K. Gusev; J. Hakenmüller

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I. Barabanov

Russian Academy of Sciences

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M. Balata

Lawrence Livermore National Laboratory

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C. Cattadori

Russian Academy of Sciences

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L. Bezrukov

Russian Academy of Sciences

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