Characterization of 30 $$^{76}$$76Ge enriched Broad Energy Ge detectors for GERDA Phase II
Clicks: 263
ID: 118571
2019
Article Quality & Performance Metrics
Overall Quality
Not rated
Combines reader engagement with the AI quality analysis. This
article has not been analysed, so there is no overall score —
reader engagement is measured and shown alongside.
Reader Engagement
Emerging Content
30.0
/100
263 views
38 readers
AI Quality Assessment
Not analyzed
Readership in this journal
EmergingRanked #29 of 65 articles by views in the european physical journal c
Most read
Least read
Bar heights use a square-root scale.
Mint this article as an NFT
Not yet mintedCreate a permanent, verifiable on-chain record of this article on the Scimatic Network. The NFT is held in your Journament account, and you can withdraw it to your own wallet at any time.
5
SUSD
one-off · no wallet required
Abstract
The GERmanium Detector Array (Gerda) is a low background experiment located at the Laboratori Nazionali del Gran Sasso in Italy, which searches for neutrinoless double-beta decay of \(^{76}\)Ge into \(^{76}\)Se+2e\(^-\). Gerda has been conceived in two phases. Phase II, which started in December 2015, features several novelties including 30 new 76Ge enriched detectors. These were manufactured according to the Broad Energy Germanium (BEGe) detector design that has a better background discrimination capability and energy resolution compared to formerly widely-used types. Prior to their installation, the new BEGe detectors were mounted in vacuum cryostats and characterized in detail in the Hades underground laboratory in Belgium. This paper describes the properties and the overall performance of these detectors during operation in vacuum. The characterization campaign provided not only direct input for Gerda Phase II data collection and analyses, but also allowed to study detector phenomena, detector correlations as well as to test the accuracy of pulse shape simulation codes.
| Reference Key |
zuzel2019thecharacterization
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
|---|---|
| Authors | M. Agostini,K. T. Knöpfle,A. M. Bakalyarov,E. Andreotti,M. Balata,I. Barabanov,L. Baudis,N. Barros,C. Bauer,E. Bellotti,S. Belogurov,G. Benato,A. Bettini,L. Bezrukov,T. Bode,D. Borowicz,V. Brudanin,R. Brugnera,D. Budjáš,A. Caldwell,C. Cattadori,A. Chernogorov,V. D’Andrea,E. V. Demidova,N. Di Marco,A. Domula,E. Doroshkevich,V. Egorov,R. Falkenstein,K. Freund,A. Gangapshev,A. Garfagnini,C. Gooch,P. Grabmayr,V. Gurentsov,K. Gusev,J. Hakenmüller,A. Hegai,M. Heisel,S. Hemmer,R. Hiller,W. Hofmann,M. Hult,L. V. Inzhechik,J. Janicskó Csáthy,J. Jochum,M. Junker,V. Kazalov,Y. Kermaïdic,T. Kihm,I. V. Kirpichnikov,A. Kirsch,A. Kish,A. Klimenko,R. Kneißl,K. T. Knöpfle,O. Kochetov,V. N. Kornoukhov,V. V. Kuzminov,M. Laubenstein,A. Lazzaro,B. Lehnert,Y. Liao,Manfred Lindner,I. Lippi,A. Lubashevskiy,B. Lubsandorzhiev,G. Lutter,C. Macolino,B. Majorovits,W. Maneschg,G. Marissens,M. Miloradovic,R. Mingazheva,M. Misiaszek,P. Moseev,I. Nemchenok,K. Panas,L. Pandola,K. Pelczar,A. Pullia,C. Ransom,S. Riboldi,N. Rumyantseva,C. Sada,F. Salamida,M. Salathe,C. Schmitt,B. Schneider,S. Schönert,A.-K. Schütz,O. Schulz,B. Schwingenheuer,O. Selivanenko,E. Shevchik,M. Shirchenko,H. Simgen,A. Smolnikov,L. Stanco,L. Vanhoefer,A. A. Vasenko,A. Veresnikova,K. Von Sturm,V. Wagner,A. Wegmann,T. Wester,C. Wiesinger,M. Wojcik,E. Yanovich,I. Zhitnikov,S. V. Zhukov,D. Zinatulina,A. J. Zsigmond,K. Zuber,G. Zuzel;M. Agostini;K. T. Knöpfle;A. M. Bakalyarov;E. Andreotti;M. Balata;I. Barabanov;L. Baudis;N. Barros;C. Bauer;E. Bellotti;S. Belogurov;G. Benato;A. Bettini;L. Bezrukov;T. Bode;D. Borowicz;V. Brudanin;R. Brugnera;D. Budjáš;A. Caldwell;C. Cattadori;A. Chernogorov;V. D’Andrea;E. V. Demidova;N. Di Marco;A. Domula;E. Doroshkevich;V. Egorov;R. Falkenstein;K. Freund;A. Gangapshev;A. Garfagnini;C. Gooch;P. Grabmayr;V. Gurentsov;K. Gusev;J. Hakenmüller;A. Hegai;M. Heisel;S. Hemmer;R. Hiller;W. Hofmann;M. Hult;L. V. Inzhechik;J. Janicskó Csáthy;J. Jochum;M. Junker;V. Kazalov;Y. Kermaïdic;T. Kihm;I. V. Kirpichnikov;A. Kirsch;A. Kish;A. Klimenko;R. Kneißl;K. T. Knöpfle;O. Kochetov;V. N. Kornoukhov;V. V. Kuzminov;M. Laubenstein;A. Lazzaro;B. Lehnert;Y. Liao;Manfred Lindner;I. Lippi;A. Lubashevskiy;B. Lubsandorzhiev;G. Lutter;C. Macolino;B. Majorovits;W. Maneschg;G. Marissens;M. Miloradovic;R. Mingazheva;M. Misiaszek;P. Moseev;I. Nemchenok;K. Panas;L. Pandola;K. Pelczar;A. Pullia;C. Ransom;S. Riboldi;N. Rumyantseva;C. Sada;F. Salamida;M. Salathe;C. Schmitt;B. Schneider;S. Schönert;A.-K. Schütz;O. Schulz;B. Schwingenheuer;O. Selivanenko;E. Shevchik;M. Shirchenko;H. Simgen;A. Smolnikov;L. Stanco;L. Vanhoefer;A. A. Vasenko;A. Veresnikova;K. Von Sturm;V. Wagner;A. Wegmann;T. Wester;C. Wiesinger;M. Wojcik;E. Yanovich;I. Zhitnikov;S. V. Zhukov;D. Zinatulina;A. J. Zsigmond;K. Zuber;G. Zuzel; |
| Journal | the european physical journal c |
| Year | 2019 |
| DOI |
10.1140/epjc/s10052-019-7353-8
|
| URL | |
| Keywords |
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.