Intrinsic backgrounds from Rn and Kr in the XENON100 experiment
| Main Author: | |
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| Publication Date: | 2018 |
| Other Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
| Format: | Article |
| Language: | eng |
| Source: | Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) |
| Download full: | https://hdl.handle.net/10316/107588 https://doi.org/10.1140/epjc/s10052-018-5565-y |
Summary: | In this paper, we describe the XENON100 data analyses used to assess the target-intrinsic background sources radon (222Rn), thoron (220Rn) and krypton (85Kr). We detail the event selections of high-energy alpha particles and decay-specific delayed coincidences. We derive distributions of the individual radionuclides inside the detector and quantify their abundances during the main three science runs of the experiment over a period of ∼ 4 years, from January 2010 to January 2014.We compare our results to external measurements of radon emanation and krypton concentrations where we find good agreement.We report an observed reduction in concentrations of radon daughters that we attribute to the plating-out of charged ions on the negatively biased cathode. |
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Intrinsic backgrounds from Rn and Kr in the XENON100 experimentIn this paper, we describe the XENON100 data analyses used to assess the target-intrinsic background sources radon (222Rn), thoron (220Rn) and krypton (85Kr). We detail the event selections of high-energy alpha particles and decay-specific delayed coincidences. We derive distributions of the individual radionuclides inside the detector and quantify their abundances during the main three science runs of the experiment over a period of ∼ 4 years, from January 2010 to January 2014.We compare our results to external measurements of radon emanation and krypton concentrations where we find good agreement.We report an observed reduction in concentrations of radon daughters that we attribute to the plating-out of charged ions on the negatively biased cathode.We gratefully acknowledge support from the National Science Foundation, Swiss National Science Foundation, Deutsche Forschungsgemeinschaft, Max Planck Gesellschaft, German Ministry for Education and Research,Netherlands Organisation for Scientific Research,Weizmann Institute of Science, I-CORE, Initial Training Network Invisibles (Marie Curie Actions, PITNGA-2011-289442), Fundacao para a Ciencia e a Tecnologia, Region des Pays de la Loire, Knut and AliceWallenberg Foundation, Kavli Foundation, and Istituto Nazionale di Fisica Nucleare. We are grateful to Laboratori Nazionali del Gran Sasso for hosting and supporting the XENON project.Springer Nature2018info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articlehttps://hdl.handle.net/10316/107588https://hdl.handle.net/10316/107588https://doi.org/10.1140/epjc/s10052-018-5565-yeng1434-60441434-6052Aprile, E.Aalbers, J.Agostini, F.Alfonsi, M.Amaro, Fernando D.Anthony, M.Arneodo, F.Barrow, P.Baudis, L.Bauermeister, BBenabderrahmane, M.L.Silva, M.Simgen, H.Sivers, M. VonStein, A.Thers, D.Tiseni, A.Trinchero, G.Tunnell, C.Vargas, M.Wang, H.Berger, T.Wang, ZWeber, M.Wei, Y.Weinheimer, C.Wittweg, C.Wulf, J.Ye, JZhang, Y.Breur, P.A.Brown, ABrown, E.Bruenner, S.Bruno, G.Budnik, R.Bütikofer, L.Calvén, J.Cardoso, J. M. R.Cervantes, M.Cichon, D.Coderre, D.Colijn, A PConrad, J.Cussonneau, J. P.Decowski, M. P.de Perio, P.Di Gangi, P.DiGiovanni, A.Diglio, S.Eurin, G.Fei, JFerella, A. D.Fieguth, A.Fulgione, W.Rosso, A. GalloGalloway, M.Gao, F.Garbini, M.Geis, C.Goetzke, L. W.Greene, Z.Grignon, C.Hasterok, C.Hogenbirk, E.Itay, R.Kaminsky, B.Kazama, S.Kessler, G.Kish, A.Landsman, H.Lang, R. F.Lellouch, DLevinson, L.Lin, Q.Lindemann, S.Lindner, M.Lombardi, FLopes, J. A. M.Manfredini, A.Maris, I.Marrodán Undagoitia, T.Masbou, J.Massoli, F. V.Masson, DMayani, D.Messina, MMicheneau, K.Molinario, A.Morå, K.Murra, M.Naganoma, J.Ni, K.Oberlack, U.Pakarha, P.Pelssers, B.Persiani, R.Piastra, F.Pienaar, J.Piro, M.C.Pizzella, VPlante, G.Priel, N.Ramírez García, D.Rauch, L.Reichard, S.Reuter, C.Rizzo, A.Rupp, N.Santos, J. M. F. dosSartorelli, G.Scheibelhut, M.Schindler, S.Schreiner, J.Schumann, M.Lavina, L. ScottoSelvi, M.Shagin, P.info:eu-repo/semantics/openAccessreponame:Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)instname:FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiainstacron:RCAAP2023-10-13T08:51:00Zoai:estudogeral.uc.pt:10316/107588Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireinfo@rcaap.ptopendoar:https://opendoar.ac.uk/repository/71602025-05-29T05:58:38.546004Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) - FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiafalse |
| dc.title.none.fl_str_mv |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| title |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| spellingShingle |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment Aprile, E. |
| title_short |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| title_full |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| title_fullStr |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| title_full_unstemmed |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| title_sort |
Intrinsic backgrounds from Rn and Kr in the XENON100 experiment |
| author |
Aprile, E. |
| author_facet |
Aprile, E. Aalbers, J. Agostini, F. Alfonsi, M. Amaro, Fernando D. Anthony, M. Arneodo, F. Barrow, P. Baudis, L. Bauermeister, B Benabderrahmane, M.L. Silva, M. Simgen, H. Sivers, M. Von Stein, A. Thers, D. Tiseni, A. Trinchero, G. Tunnell, C. Vargas, M. Wang, H. Berger, T. Wang, Z Weber, M. Wei, Y. Weinheimer, C. Wittweg, C. Wulf, J. Ye, J Zhang, Y. Breur, P.A. Brown, A Brown, E. Bruenner, S. Bruno, G. Budnik, R. Bütikofer, L. Calvén, J. Cardoso, J. M. R. Cervantes, M. Cichon, D. Coderre, D. Colijn, A P Conrad, J. Cussonneau, J. P. Decowski, M. P. de Perio, P. Di Gangi, P. DiGiovanni, A. Diglio, S. Eurin, G. Fei, J Ferella, A. D. Fieguth, A. Fulgione, W. Rosso, A. Gallo Galloway, M. Gao, F. Garbini, M. Geis, C. Goetzke, L. W. Greene, Z. Grignon, C. Hasterok, C. Hogenbirk, E. Itay, R. Kaminsky, B. Kazama, S. Kessler, G. Kish, A. Landsman, H. Lang, R. F. Lellouch, D Levinson, L. Lin, Q. Lindemann, S. Lindner, M. Lombardi, F Lopes, J. A. M. Manfredini, A. Maris, I. Marrodán Undagoitia, T. Masbou, J. Massoli, F. V. Masson, D Mayani, D. Messina, M Micheneau, K. Molinario, A. Morå, K. Murra, M. Naganoma, J. Ni, K. Oberlack, U. Pakarha, P. Pelssers, B. Persiani, R. Piastra, F. Pienaar, J. Piro, M.C. Pizzella, V Plante, G. Priel, N. Ramírez García, D. Rauch, L. Reichard, S. Reuter, C. Rizzo, A. Rupp, N. Santos, J. M. F. dos Sartorelli, G. Scheibelhut, M. Schindler, S. Schreiner, J. Schumann, M. Lavina, L. Scotto Selvi, M. Shagin, P. |
| author_role |
author |
| author2 |
Aalbers, J. Agostini, F. Alfonsi, M. Amaro, Fernando D. Anthony, M. Arneodo, F. Barrow, P. Baudis, L. Bauermeister, B Benabderrahmane, M.L. Silva, M. Simgen, H. Sivers, M. Von Stein, A. Thers, D. Tiseni, A. Trinchero, G. Tunnell, C. Vargas, M. Wang, H. Berger, T. Wang, Z Weber, M. Wei, Y. Weinheimer, C. Wittweg, C. Wulf, J. Ye, J Zhang, Y. Breur, P.A. Brown, A Brown, E. Bruenner, S. Bruno, G. Budnik, R. Bütikofer, L. Calvén, J. Cardoso, J. M. R. Cervantes, M. Cichon, D. Coderre, D. Colijn, A P Conrad, J. Cussonneau, J. P. Decowski, M. P. de Perio, P. Di Gangi, P. DiGiovanni, A. Diglio, S. Eurin, G. Fei, J Ferella, A. D. Fieguth, A. Fulgione, W. Rosso, A. Gallo Galloway, M. Gao, F. Garbini, M. Geis, C. Goetzke, L. W. Greene, Z. Grignon, C. Hasterok, C. Hogenbirk, E. Itay, R. Kaminsky, B. Kazama, S. Kessler, G. Kish, A. Landsman, H. Lang, R. F. Lellouch, D Levinson, L. Lin, Q. Lindemann, S. Lindner, M. Lombardi, F Lopes, J. A. M. Manfredini, A. Maris, I. Marrodán Undagoitia, T. Masbou, J. Massoli, F. V. Masson, D Mayani, D. Messina, M Micheneau, K. Molinario, A. Morå, K. Murra, M. Naganoma, J. Ni, K. Oberlack, U. Pakarha, P. Pelssers, B. Persiani, R. Piastra, F. Pienaar, J. Piro, M.C. Pizzella, V Plante, G. Priel, N. Ramírez García, D. Rauch, L. Reichard, S. Reuter, C. Rizzo, A. Rupp, N. Santos, J. M. F. dos Sartorelli, G. Scheibelhut, M. Schindler, S. Schreiner, J. Schumann, M. Lavina, L. Scotto Selvi, M. Shagin, P. |
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author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author |
| dc.contributor.author.fl_str_mv |
Aprile, E. Aalbers, J. Agostini, F. Alfonsi, M. Amaro, Fernando D. Anthony, M. Arneodo, F. Barrow, P. Baudis, L. Bauermeister, B Benabderrahmane, M.L. Silva, M. Simgen, H. Sivers, M. Von Stein, A. Thers, D. Tiseni, A. Trinchero, G. Tunnell, C. Vargas, M. Wang, H. Berger, T. Wang, Z Weber, M. Wei, Y. Weinheimer, C. Wittweg, C. Wulf, J. Ye, J Zhang, Y. Breur, P.A. Brown, A Brown, E. Bruenner, S. Bruno, G. Budnik, R. Bütikofer, L. Calvén, J. Cardoso, J. M. R. Cervantes, M. Cichon, D. Coderre, D. Colijn, A P Conrad, J. Cussonneau, J. P. Decowski, M. P. de Perio, P. Di Gangi, P. DiGiovanni, A. Diglio, S. Eurin, G. Fei, J Ferella, A. D. Fieguth, A. Fulgione, W. Rosso, A. Gallo Galloway, M. Gao, F. Garbini, M. Geis, C. Goetzke, L. W. Greene, Z. Grignon, C. Hasterok, C. Hogenbirk, E. Itay, R. Kaminsky, B. Kazama, S. Kessler, G. Kish, A. Landsman, H. Lang, R. F. Lellouch, D Levinson, L. Lin, Q. Lindemann, S. Lindner, M. Lombardi, F Lopes, J. A. M. Manfredini, A. Maris, I. Marrodán Undagoitia, T. Masbou, J. Massoli, F. V. Masson, D Mayani, D. Messina, M Micheneau, K. Molinario, A. Morå, K. Murra, M. Naganoma, J. Ni, K. Oberlack, U. Pakarha, P. Pelssers, B. Persiani, R. Piastra, F. Pienaar, J. Piro, M.C. Pizzella, V Plante, G. Priel, N. Ramírez García, D. Rauch, L. Reichard, S. Reuter, C. Rizzo, A. Rupp, N. Santos, J. M. F. dos Sartorelli, G. Scheibelhut, M. Schindler, S. Schreiner, J. Schumann, M. Lavina, L. Scotto Selvi, M. Shagin, P. |
| description |
In this paper, we describe the XENON100 data analyses used to assess the target-intrinsic background sources radon (222Rn), thoron (220Rn) and krypton (85Kr). We detail the event selections of high-energy alpha particles and decay-specific delayed coincidences. We derive distributions of the individual radionuclides inside the detector and quantify their abundances during the main three science runs of the experiment over a period of ∼ 4 years, from January 2010 to January 2014.We compare our results to external measurements of radon emanation and krypton concentrations where we find good agreement.We report an observed reduction in concentrations of radon daughters that we attribute to the plating-out of charged ions on the negatively biased cathode. |
| publishDate |
2018 |
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2018 |
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eng |
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