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Simulation-based design study for the passive shielding of the COSINUS dark matter experiment

The COSINUS (Cryogenic Observatory for SIgnatures seen in Next-generation Underground Searches) experiment aims at the detection of dark matter-induced recoils in sodium iodide (NaI) crystals operated as scintillating cryogenic calorimeters. The detection of both scintillation light and phonons allo...

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Autores principales: Angloher, G., Dafinei, I., Marco, N. Di, Ferroni, F., Fichtinger, S., Filipponi, A., Friedl, M., Fuss, A., Ge, Z., Heikinheimo, M., Huitu, K., Maji, R., Mancuso, M., Pagnanini, L., Petricca, F., Pirro, S., Pröbst, F., Profeta, G., Puiu, A., Reindl, F., Schäffner, K., Schieck, J., Schmiedmayer, D., Schwertner, C., Stahlberg, M., Stendahl, A., Wagner, F., Yue, S., Zema, V., Zhu, Y., Pandola, L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8940824/
https://www.ncbi.nlm.nih.gov/pubmed/35399983
http://dx.doi.org/10.1140/epjc/s10052-022-10184-5
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author Angloher, G.
Dafinei, I.
Marco, N. Di
Ferroni, F.
Fichtinger, S.
Filipponi, A.
Friedl, M.
Fuss, A.
Ge, Z.
Heikinheimo, M.
Huitu, K.
Maji, R.
Mancuso, M.
Pagnanini, L.
Petricca, F.
Pirro, S.
Pröbst, F.
Profeta, G.
Puiu, A.
Reindl, F.
Schäffner, K.
Schieck, J.
Schmiedmayer, D.
Schwertner, C.
Stahlberg, M.
Stendahl, A.
Wagner, F.
Yue, S.
Zema, V.
Zhu, Y.
Pandola, L.
author_facet Angloher, G.
Dafinei, I.
Marco, N. Di
Ferroni, F.
Fichtinger, S.
Filipponi, A.
Friedl, M.
Fuss, A.
Ge, Z.
Heikinheimo, M.
Huitu, K.
Maji, R.
Mancuso, M.
Pagnanini, L.
Petricca, F.
Pirro, S.
Pröbst, F.
Profeta, G.
Puiu, A.
Reindl, F.
Schäffner, K.
Schieck, J.
Schmiedmayer, D.
Schwertner, C.
Stahlberg, M.
Stendahl, A.
Wagner, F.
Yue, S.
Zema, V.
Zhu, Y.
Pandola, L.
author_sort Angloher, G.
collection PubMed
description The COSINUS (Cryogenic Observatory for SIgnatures seen in Next-generation Underground Searches) experiment aims at the detection of dark matter-induced recoils in sodium iodide (NaI) crystals operated as scintillating cryogenic calorimeters. The detection of both scintillation light and phonons allows performing an event-by-event signal to background discrimination, thus enhancing the sensitivity of the experiment. The choice of using NaI crystals is motivated by the goal of probing the long-standing DAMA/LIBRA results using the same target material. The construction of the experimental facility is foreseen to start by 2021 at the INFN Gran Sasso National Laboratory (LNGS) in Italy. It consists of a cryostat housing the target crystals shielded from the external radioactivity by a water tank acting, at the same time, as an active veto against cosmic ray-induced events. Taking into account both environmental radioactivity and intrinsic contamination of materials used for cryostat, shielding and infrastructure, we performed a careful background budget estimation. The goal is to evaluate the number of events that could mimic or interfere with signal detection while optimising the geometry of the experimental setup. In this paper we present the results of the detailed Monte Carlo simulations we performed, together with the final design of the setup that minimises the residual amount of background particles reaching the detector volume.
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spelling pubmed-89408242022-04-07 Simulation-based design study for the passive shielding of the COSINUS dark matter experiment Angloher, G. Dafinei, I. Marco, N. Di Ferroni, F. Fichtinger, S. Filipponi, A. Friedl, M. Fuss, A. Ge, Z. Heikinheimo, M. Huitu, K. Maji, R. Mancuso, M. Pagnanini, L. Petricca, F. Pirro, S. Pröbst, F. Profeta, G. Puiu, A. Reindl, F. Schäffner, K. Schieck, J. Schmiedmayer, D. Schwertner, C. Stahlberg, M. Stendahl, A. Wagner, F. Yue, S. Zema, V. Zhu, Y. Pandola, L. Eur Phys J C Part Fields Regular Article - Experimental Physics The COSINUS (Cryogenic Observatory for SIgnatures seen in Next-generation Underground Searches) experiment aims at the detection of dark matter-induced recoils in sodium iodide (NaI) crystals operated as scintillating cryogenic calorimeters. The detection of both scintillation light and phonons allows performing an event-by-event signal to background discrimination, thus enhancing the sensitivity of the experiment. The choice of using NaI crystals is motivated by the goal of probing the long-standing DAMA/LIBRA results using the same target material. The construction of the experimental facility is foreseen to start by 2021 at the INFN Gran Sasso National Laboratory (LNGS) in Italy. It consists of a cryostat housing the target crystals shielded from the external radioactivity by a water tank acting, at the same time, as an active veto against cosmic ray-induced events. Taking into account both environmental radioactivity and intrinsic contamination of materials used for cryostat, shielding and infrastructure, we performed a careful background budget estimation. The goal is to evaluate the number of events that could mimic or interfere with signal detection while optimising the geometry of the experimental setup. In this paper we present the results of the detailed Monte Carlo simulations we performed, together with the final design of the setup that minimises the residual amount of background particles reaching the detector volume. Springer Berlin Heidelberg 2022-03-22 2022 /pmc/articles/PMC8940824/ /pubmed/35399983 http://dx.doi.org/10.1140/epjc/s10052-022-10184-5 Text en © The Author(s) 2022 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 Regular Article - Experimental Physics
Angloher, G.
Dafinei, I.
Marco, N. Di
Ferroni, F.
Fichtinger, S.
Filipponi, A.
Friedl, M.
Fuss, A.
Ge, Z.
Heikinheimo, M.
Huitu, K.
Maji, R.
Mancuso, M.
Pagnanini, L.
Petricca, F.
Pirro, S.
Pröbst, F.
Profeta, G.
Puiu, A.
Reindl, F.
Schäffner, K.
Schieck, J.
Schmiedmayer, D.
Schwertner, C.
Stahlberg, M.
Stendahl, A.
Wagner, F.
Yue, S.
Zema, V.
Zhu, Y.
Pandola, L.
Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title_full Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title_fullStr Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title_full_unstemmed Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title_short Simulation-based design study for the passive shielding of the COSINUS dark matter experiment
title_sort simulation-based design study for the passive shielding of the cosinus dark matter experiment
topic Regular Article - Experimental Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8940824/
https://www.ncbi.nlm.nih.gov/pubmed/35399983
http://dx.doi.org/10.1140/epjc/s10052-022-10184-5
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