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Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments

Neutrinoless double-[Formula: see text] decay of [Formula: see text] Ge is searched for with germanium detectors where source and detector of the decay are identical. For the success of future experiments it is important to increase the mass of the detectors. We report here on the characterization a...

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Autores principales: Agostini, M., Araujo, G., Bakalyarov, A. M., Balata, M., Barabanov, I., Baudis, L., Bauer, C., Bellotti, E., Belogurov, S., Bettini, A., Bezrukov, L., Biancacci, V., Bossio, E., Bothe, V., Brudanin, V., Brugnera, R., Caldwell, A., Cattadori, C., Chernogorov, A., Comellato, T., D’Andrea, V., Demidova, E. V., Marco, N. Di, Doroshkevich, E., Fischer, F., Fomina, M., Gangapshev, A., Garfagnini, A., Gooch, C., Grabmayr, P., Gurentsov, V., Gusev, K., Hakenmüller, J., Hemmer, S., Hofmann, W., Huang, J., Hult, M., Inzhechik, L. V., Janicskó Csáthy, J., Jochum, J., Junker, M., Kazalov, V., Kermaïdic, Y., Khushbakht, H., Kihm, T., Kirpichnikov, I. V., Klimenko, A., Kneißl, R., Knöpfle, K. T., Kochetov, O., Kornoukhov, V. N., Krause, P., Kuzminov, V. V., Laubenstein, M., Lindner, M., Lippi, I., Lubashevskiy, A., Lubsandorzhiev, B., Lutter, G., Macolino, C., Majorovits, B., Maneschg, W., Manzanillas, L., Miloradovic, M., Mingazheva, R., Misiaszek, M., Moseev, P., Müller, Y., Nemchenok, I., Pandola, L., Pelczar, K., Pertoldi, L., Piseri, P., Pullia, A., Ransom, C., Rauscher, L., Riboldi, S., Rumyantseva, N., Sada, C., Salamida, F., Schönert, S., Schreiner, J., Schütt, M., Schütz, A.-K., Schulz, O., Schwarz, M., Schwingenheuer, B., Selivanenko, O., Shevchik, E., Shirchenko, M., Shtembari, L., Simgen, H., Smolnikov, A., Stukov, D., Vasenko, A. A., Veresnikova, A., Vignoli, C., von Sturm, K., Wester, T., Wiesinger, C., Wojcik, M., Yanovich, E., Zatschler, B., Zhitnikov, I., Zhukov, S. V., Zinatulina, D., Zschocke, A., Zsigmond, A. J., Zuber, K., Zuzel, G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549949/
https://www.ncbi.nlm.nih.gov/pubmed/34720720
http://dx.doi.org/10.1140/epjc/s10052-021-09184-8
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author Agostini, M.
Araujo, G.
Bakalyarov, A. M.
Balata, M.
Barabanov, I.
Baudis, L.
Bauer, C.
Bellotti, E.
Belogurov, S.
Bettini, A.
Bezrukov, L.
Biancacci, V.
Bossio, E.
Bothe, V.
Brudanin, V.
Brugnera, R.
Caldwell, A.
Cattadori, C.
Chernogorov, A.
Comellato, T.
D’Andrea, V.
Demidova, E. V.
Marco, N. Di
Doroshkevich, E.
Fischer, F.
Fomina, M.
Gangapshev, A.
Garfagnini, A.
Gooch, C.
Grabmayr, P.
Gurentsov, V.
Gusev, K.
Hakenmüller, J.
Hemmer, S.
Hofmann, W.
Huang, J.
Hult, M.
Inzhechik, L. V.
Janicskó Csáthy, J.
Jochum, J.
Junker, M.
Kazalov, V.
Kermaïdic, Y.
Khushbakht, H.
Kihm, T.
Kirpichnikov, I. V.
Klimenko, A.
Kneißl, R.
Knöpfle, K. T.
Kochetov, O.
Kornoukhov, V. N.
Krause, P.
Kuzminov, V. V.
Laubenstein, M.
Lindner, M.
Lippi, I.
Lubashevskiy, A.
Lubsandorzhiev, B.
Lutter, G.
Macolino, C.
Majorovits, B.
Maneschg, W.
Manzanillas, L.
Miloradovic, M.
Mingazheva, R.
Misiaszek, M.
Moseev, P.
Müller, Y.
Nemchenok, I.
Pandola, L.
Pelczar, K.
Pertoldi, L.
Piseri, P.
Pullia, A.
Ransom, C.
Rauscher, L.
Riboldi, S.
Rumyantseva, N.
Sada, C.
Salamida, F.
Schönert, S.
Schreiner, J.
Schütt, M.
Schütz, A.-K.
Schulz, O.
Schwarz, M.
Schwingenheuer, B.
Selivanenko, O.
Shevchik, E.
Shirchenko, M.
Shtembari, L.
Simgen, H.
Smolnikov, A.
Stukov, D.
Vasenko, A. A.
Veresnikova, A.
Vignoli, C.
von Sturm, K.
Wester, T.
Wiesinger, C.
Wojcik, M.
Yanovich, E.
Zatschler, B.
Zhitnikov, I.
Zhukov, S. V.
Zinatulina, D.
Zschocke, A.
Zsigmond, A. J.
Zuber, K.
Zuzel, G.
author_facet Agostini, M.
Araujo, G.
Bakalyarov, A. M.
Balata, M.
Barabanov, I.
Baudis, L.
Bauer, C.
Bellotti, E.
Belogurov, S.
Bettini, A.
Bezrukov, L.
Biancacci, V.
Bossio, E.
Bothe, V.
Brudanin, V.
Brugnera, R.
Caldwell, A.
Cattadori, C.
Chernogorov, A.
Comellato, T.
D’Andrea, V.
Demidova, E. V.
Marco, N. Di
Doroshkevich, E.
Fischer, F.
Fomina, M.
Gangapshev, A.
Garfagnini, A.
Gooch, C.
Grabmayr, P.
Gurentsov, V.
Gusev, K.
Hakenmüller, J.
Hemmer, S.
Hofmann, W.
Huang, J.
Hult, M.
Inzhechik, L. V.
Janicskó Csáthy, J.
Jochum, J.
Junker, M.
Kazalov, V.
Kermaïdic, Y.
Khushbakht, H.
Kihm, T.
Kirpichnikov, I. V.
Klimenko, A.
Kneißl, R.
Knöpfle, K. T.
Kochetov, O.
Kornoukhov, V. N.
Krause, P.
Kuzminov, V. V.
Laubenstein, M.
Lindner, M.
Lippi, I.
Lubashevskiy, A.
Lubsandorzhiev, B.
Lutter, G.
Macolino, C.
Majorovits, B.
Maneschg, W.
Manzanillas, L.
Miloradovic, M.
Mingazheva, R.
Misiaszek, M.
Moseev, P.
Müller, Y.
Nemchenok, I.
Pandola, L.
Pelczar, K.
Pertoldi, L.
Piseri, P.
Pullia, A.
Ransom, C.
Rauscher, L.
Riboldi, S.
Rumyantseva, N.
Sada, C.
Salamida, F.
Schönert, S.
Schreiner, J.
Schütt, M.
Schütz, A.-K.
Schulz, O.
Schwarz, M.
Schwingenheuer, B.
Selivanenko, O.
Shevchik, E.
Shirchenko, M.
Shtembari, L.
Simgen, H.
Smolnikov, A.
Stukov, D.
Vasenko, A. A.
Veresnikova, A.
Vignoli, C.
von Sturm, K.
Wester, T.
Wiesinger, C.
Wojcik, M.
Yanovich, E.
Zatschler, B.
Zhitnikov, I.
Zhukov, S. V.
Zinatulina, D.
Zschocke, A.
Zsigmond, A. J.
Zuber, K.
Zuzel, G.
author_sort Agostini, M.
collection PubMed
description Neutrinoless double-[Formula: see text] decay of [Formula: see text] Ge is searched for with germanium detectors where source and detector of the decay are identical. For the success of future experiments it is important to increase the mass of the detectors. We report here on the characterization and testing of five prototype detectors manufactured in inverted coaxial (IC) geometry from material enriched to 88% in [Formula: see text] Ge. IC detectors combine the large mass of the traditional semi-coaxial Ge detectors with the superior resolution and pulse shape discrimination power of point contact detectors which exhibited so far much lower mass. Their performance has been found to be satisfactory both when operated in vacuum cryostat and bare in liquid argon within the Gerda setup. The measured resolutions at the Q-value for double-[Formula: see text] decay of [Formula: see text] Ge ([Formula: see text]  = 2039 keV) are about 2.1 keV full width at half maximum in vacuum cryostat. After 18 months of operation within the ultra-low background environment of the GERmanium Detector Array (Gerda) experiment and an accumulated exposure of 8.5 kg[Formula: see text] year, the background index after analysis cuts is measured to be [Formula: see text] around [Formula: see text] . This work confirms the feasibility of IC detectors for the next-generation experiment Legend.
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spelling pubmed-85499492021-10-29 Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments Agostini, M. Araujo, G. Bakalyarov, A. M. Balata, M. Barabanov, I. Baudis, L. Bauer, C. Bellotti, E. Belogurov, S. Bettini, A. Bezrukov, L. Biancacci, V. Bossio, E. Bothe, V. Brudanin, V. Brugnera, R. Caldwell, A. Cattadori, C. Chernogorov, A. Comellato, T. D’Andrea, V. Demidova, E. V. Marco, N. Di Doroshkevich, E. Fischer, F. Fomina, M. Gangapshev, A. Garfagnini, A. Gooch, C. Grabmayr, P. Gurentsov, V. Gusev, K. Hakenmüller, J. Hemmer, S. Hofmann, W. Huang, J. Hult, M. Inzhechik, L. V. Janicskó Csáthy, J. Jochum, J. Junker, M. Kazalov, V. Kermaïdic, Y. Khushbakht, H. Kihm, T. Kirpichnikov, I. V. Klimenko, A. Kneißl, R. Knöpfle, K. T. Kochetov, O. Kornoukhov, V. N. Krause, P. Kuzminov, V. V. Laubenstein, M. Lindner, M. Lippi, I. Lubashevskiy, A. Lubsandorzhiev, B. Lutter, G. Macolino, C. Majorovits, B. Maneschg, W. Manzanillas, L. Miloradovic, M. Mingazheva, R. Misiaszek, M. Moseev, P. Müller, Y. Nemchenok, I. Pandola, L. Pelczar, K. Pertoldi, L. Piseri, P. Pullia, A. Ransom, C. Rauscher, L. Riboldi, S. Rumyantseva, N. Sada, C. Salamida, F. Schönert, S. Schreiner, J. Schütt, M. Schütz, A.-K. Schulz, O. Schwarz, M. Schwingenheuer, B. Selivanenko, O. Shevchik, E. Shirchenko, M. Shtembari, L. Simgen, H. Smolnikov, A. Stukov, D. Vasenko, A. A. Veresnikova, A. Vignoli, C. von Sturm, K. Wester, T. Wiesinger, C. Wojcik, M. Yanovich, E. Zatschler, B. Zhitnikov, I. Zhukov, S. V. Zinatulina, D. Zschocke, A. Zsigmond, A. J. Zuber, K. Zuzel, G. Eur Phys J C Part Fields Special Article – Tools for Experiment and Theory Neutrinoless double-[Formula: see text] decay of [Formula: see text] Ge is searched for with germanium detectors where source and detector of the decay are identical. For the success of future experiments it is important to increase the mass of the detectors. We report here on the characterization and testing of five prototype detectors manufactured in inverted coaxial (IC) geometry from material enriched to 88% in [Formula: see text] Ge. IC detectors combine the large mass of the traditional semi-coaxial Ge detectors with the superior resolution and pulse shape discrimination power of point contact detectors which exhibited so far much lower mass. Their performance has been found to be satisfactory both when operated in vacuum cryostat and bare in liquid argon within the Gerda setup. The measured resolutions at the Q-value for double-[Formula: see text] decay of [Formula: see text] Ge ([Formula: see text]  = 2039 keV) are about 2.1 keV full width at half maximum in vacuum cryostat. After 18 months of operation within the ultra-low background environment of the GERmanium Detector Array (Gerda) experiment and an accumulated exposure of 8.5 kg[Formula: see text] year, the background index after analysis cuts is measured to be [Formula: see text] around [Formula: see text] . This work confirms the feasibility of IC detectors for the next-generation experiment Legend. Springer Berlin Heidelberg 2021-06-07 2021 /pmc/articles/PMC8549949/ /pubmed/34720720 http://dx.doi.org/10.1140/epjc/s10052-021-09184-8 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . Funded by SCOAP3
spellingShingle Special Article – Tools for Experiment and Theory
Agostini, M.
Araujo, G.
Bakalyarov, A. M.
Balata, M.
Barabanov, I.
Baudis, L.
Bauer, C.
Bellotti, E.
Belogurov, S.
Bettini, A.
Bezrukov, L.
Biancacci, V.
Bossio, E.
Bothe, V.
Brudanin, V.
Brugnera, R.
Caldwell, A.
Cattadori, C.
Chernogorov, A.
Comellato, T.
D’Andrea, V.
Demidova, E. V.
Marco, N. Di
Doroshkevich, E.
Fischer, F.
Fomina, M.
Gangapshev, A.
Garfagnini, A.
Gooch, C.
Grabmayr, P.
Gurentsov, V.
Gusev, K.
Hakenmüller, J.
Hemmer, S.
Hofmann, W.
Huang, J.
Hult, M.
Inzhechik, L. V.
Janicskó Csáthy, J.
Jochum, J.
Junker, M.
Kazalov, V.
Kermaïdic, Y.
Khushbakht, H.
Kihm, T.
Kirpichnikov, I. V.
Klimenko, A.
Kneißl, R.
Knöpfle, K. T.
Kochetov, O.
Kornoukhov, V. N.
Krause, P.
Kuzminov, V. V.
Laubenstein, M.
Lindner, M.
Lippi, I.
Lubashevskiy, A.
Lubsandorzhiev, B.
Lutter, G.
Macolino, C.
Majorovits, B.
Maneschg, W.
Manzanillas, L.
Miloradovic, M.
Mingazheva, R.
Misiaszek, M.
Moseev, P.
Müller, Y.
Nemchenok, I.
Pandola, L.
Pelczar, K.
Pertoldi, L.
Piseri, P.
Pullia, A.
Ransom, C.
Rauscher, L.
Riboldi, S.
Rumyantseva, N.
Sada, C.
Salamida, F.
Schönert, S.
Schreiner, J.
Schütt, M.
Schütz, A.-K.
Schulz, O.
Schwarz, M.
Schwingenheuer, B.
Selivanenko, O.
Shevchik, E.
Shirchenko, M.
Shtembari, L.
Simgen, H.
Smolnikov, A.
Stukov, D.
Vasenko, A. A.
Veresnikova, A.
Vignoli, C.
von Sturm, K.
Wester, T.
Wiesinger, C.
Wojcik, M.
Yanovich, E.
Zatschler, B.
Zhitnikov, I.
Zhukov, S. V.
Zinatulina, D.
Zschocke, A.
Zsigmond, A. J.
Zuber, K.
Zuzel, G.
Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title_full Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title_fullStr Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title_full_unstemmed Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title_short Characterization of inverted coaxial [Formula: see text] Ge detectors in GERDA for future double-[Formula: see text] decay experiments
title_sort characterization of inverted coaxial [formula: see text] ge detectors in gerda for future double-[formula: see text] decay experiments
topic Special Article – Tools for Experiment and Theory
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549949/
https://www.ncbi.nlm.nih.gov/pubmed/34720720
http://dx.doi.org/10.1140/epjc/s10052-021-09184-8
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AT majorovitsb characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT maneschgw characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT manzanillasl characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT miloradovicm characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT mingazhevar characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT misiaszekm characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT moseevp characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT mullery characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT nemchenoki characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT pandolal characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT pelczark characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT pertoldil characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT piserip characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT pulliaa characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT ransomc characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT rauscherl characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT riboldis characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT rumyantsevan characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT sadac characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT salamidaf characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schonerts characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schreinerj characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schuttm characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schutzak characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schulzo characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schwarzm characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT schwingenheuerb characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT selivanenkoo characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT shevchike characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT shirchenkom characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT shtembaril characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT simgenh characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT smolnikova characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT stukovd characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT vasenkoaa characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT veresnikovaa characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT vignolic characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT vonsturmk characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT westert characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT wiesingerc characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT wojcikm characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT yanoviche characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zatschlerb characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zhitnikovi characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zhukovsv characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zinatulinad characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zschockea characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zsigmondaj characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zuberk characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT zuzelg characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments
AT characterizationofinvertedcoaxialformulaseetextgedetectorsingerdaforfuturedoubleformulaseetextdecayexperiments