[Formula: see text] Rn  emanation measurements for the XENON1T experiment

The selection of low-radioactive construction materials is of utmost importance for the success of low-energy rare event search experiments. Besides radioactive contaminants in the bulk, the emanation of radioactive radon atoms from material surfaces attains increasing relevance in the effort to fur...

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Autores principales: Aprile, E., Aalbers, J., Agostini, F., Alfonsi, M., Althueser, L., Amaro, F. D., Antochi, V. C., Angelino, E., Angevaare, J. R., Arneodo, F., Barge, D., Baudis, L., Bauermeister, B., Bellagamba, L., Benabderrahmane, M. L., Berger, T., Breur, P. A., Brown, A., Brown, E., Bruenner, S., Bruno, G., Budnik, R., Capelli, C., Cardoso, J. M. R., Cichon, D., Cimmino, B., Clark, M., Coderre, D., Colijn, A. P., Conrad, J., Cussonneau, J. P., Decowski, M. P., Depoian, A., Di Gangi, P., Di Giovanni, A., Di Stefano, R., Diglio, S., Elykov, A., Eurin, G., Ferella, A. D., Fulgione, W., Gaemers, P., Gaior, R., Rosso, A. Gallo, Galloway, M., Gao, F., Grandi, L., Garbini, M., Hasterok, C., Hils, C., Hiraide, K., Hoetzsch, L., Hogenbirk, E., Howlett, J., Iacovacci, M., Itow, Y., Joerg, F., Kato, N., Kazama, S., Kobayashi, M., Koltman, G., Kopec, A., Landsman, H., Lang, R. F., Levinson, L., Lin, Q., Lindemann, S., Lindner, M., Lombardi, F., Lopes, J. A. M., López Fune, E., Macolino, C., Mahlstedt, J., Manenti, L., Manfredini, A., Marignetti, F., Undagoitia, T. Marrodán, Martens, K., Masbou, J., Masson, D., Mastroianni, S., Messina, M., Miuchi, K., Molinario, A., Morå, K., Moriyama, S., Mosbacher, Y., Murra, M., Naganoma, J., Ni, K., Oberlack, U., Odgers, K., Palacio, J., Pelssers, B., Peres, R., Pienaar, J., Pizzella, V., Plante, G., Qin, J., Qiu, H., García, D. Ramírez, Reichard, S., Rocchetti, A., Rupp, N., Santos, J. M. F. dos, Sartorelli, G., Šarčević, N., Scheibelhut, M., Schindler, S., Schreiner, J., Schulte, D., Schumann, M., Lavina, L. Scotto, Selvi, M., Semeria, F., Shagin, P., Shockley, E., Silva, M., Simgen, H., Takeda, A., Therreau, C., Thers, D., Toschi, F., Trinchero, G., Tunnell, C., Vargas, M., Volta, G., Wack, O., Wang, H., Wei, Y., Weinheimer, C., Weiss, M., Wenz, D., Westermann, J., Wittweg, C., Wulf, J., Xu, Z., Yamashita, M., Ye, J., Zavattini, G., Zhang, Y., Zhu, T., Zopounidis, J. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550029/
https://www.ncbi.nlm.nih.gov/pubmed/34720714
http://dx.doi.org/10.1140/epjc/s10052-020-08777-z
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author Aprile, E.
Aalbers, J.
Agostini, F.
Alfonsi, M.
Althueser, L.
Amaro, F. D.
Antochi, V. C.
Angelino, E.
Angevaare, J. R.
Arneodo, F.
Barge, D.
Baudis, L.
Bauermeister, B.
Bellagamba, L.
Benabderrahmane, M. L.
Berger, T.
Breur, P. A.
Brown, A.
Brown, E.
Bruenner, S.
Bruno, G.
Budnik, R.
Capelli, C.
Cardoso, J. M. R.
Cichon, D.
Cimmino, B.
Clark, M.
Coderre, D.
Colijn, A. P.
Conrad, J.
Cussonneau, J. P.
Decowski, M. P.
Depoian, A.
Di Gangi, P.
Di Giovanni, A.
Di Stefano, R.
Diglio, S.
Elykov, A.
Eurin, G.
Ferella, A. D.
Fulgione, W.
Gaemers, P.
Gaior, R.
Rosso, A. Gallo
Galloway, M.
Gao, F.
Grandi, L.
Garbini, M.
Hasterok, C.
Hils, C.
Hiraide, K.
Hoetzsch, L.
Hogenbirk, E.
Howlett, J.
Iacovacci, M.
Itow, Y.
Joerg, F.
Kato, N.
Kazama, S.
Kobayashi, M.
Koltman, G.
Kopec, A.
Landsman, H.
Lang, R. F.
Levinson, L.
Lin, Q.
Lindemann, S.
Lindner, M.
Lombardi, F.
Lopes, J. A. M.
López Fune, E.
Macolino, C.
Mahlstedt, J.
Manenti, L.
Manfredini, A.
Marignetti, F.
Undagoitia, T. Marrodán
Martens, K.
Masbou, J.
Masson, D.
Mastroianni, S.
Messina, M.
Miuchi, K.
Molinario, A.
Morå, K.
Moriyama, S.
Mosbacher, Y.
Murra, M.
Naganoma, J.
Ni, K.
Oberlack, U.
Odgers, K.
Palacio, J.
Pelssers, B.
Peres, R.
Pienaar, J.
Pizzella, V.
Plante, G.
Qin, J.
Qiu, H.
García, D. Ramírez
Reichard, S.
Rocchetti, A.
Rupp, N.
Santos, J. M. F. dos
Sartorelli, G.
Šarčević, N.
Scheibelhut, M.
Schindler, S.
Schreiner, J.
Schulte, D.
Schumann, M.
Lavina, L. Scotto
Selvi, M.
Semeria, F.
Shagin, P.
Shockley, E.
Silva, M.
Simgen, H.
Takeda, A.
Therreau, C.
Thers, D.
Toschi, F.
Trinchero, G.
Tunnell, C.
Vargas, M.
Volta, G.
Wack, O.
Wang, H.
Wei, Y.
Weinheimer, C.
Weiss, M.
Wenz, D.
Westermann, J.
Wittweg, C.
Wulf, J.
Xu, Z.
Yamashita, M.
Ye, J.
Zavattini, G.
Zhang, Y.
Zhu, T.
Zopounidis, J. P.
author_facet Aprile, E.
Aalbers, J.
Agostini, F.
Alfonsi, M.
Althueser, L.
Amaro, F. D.
Antochi, V. C.
Angelino, E.
Angevaare, J. R.
Arneodo, F.
Barge, D.
Baudis, L.
Bauermeister, B.
Bellagamba, L.
Benabderrahmane, M. L.
Berger, T.
Breur, P. A.
Brown, A.
Brown, E.
Bruenner, S.
Bruno, G.
Budnik, R.
Capelli, C.
Cardoso, J. M. R.
Cichon, D.
Cimmino, B.
Clark, M.
Coderre, D.
Colijn, A. P.
Conrad, J.
Cussonneau, J. P.
Decowski, M. P.
Depoian, A.
Di Gangi, P.
Di Giovanni, A.
Di Stefano, R.
Diglio, S.
Elykov, A.
Eurin, G.
Ferella, A. D.
Fulgione, W.
Gaemers, P.
Gaior, R.
Rosso, A. Gallo
Galloway, M.
Gao, F.
Grandi, L.
Garbini, M.
Hasterok, C.
Hils, C.
Hiraide, K.
Hoetzsch, L.
Hogenbirk, E.
Howlett, J.
Iacovacci, M.
Itow, Y.
Joerg, F.
Kato, N.
Kazama, S.
Kobayashi, M.
Koltman, G.
Kopec, A.
Landsman, H.
Lang, R. F.
Levinson, L.
Lin, Q.
Lindemann, S.
Lindner, M.
Lombardi, F.
Lopes, J. A. M.
López Fune, E.
Macolino, C.
Mahlstedt, J.
Manenti, L.
Manfredini, A.
Marignetti, F.
Undagoitia, T. Marrodán
Martens, K.
Masbou, J.
Masson, D.
Mastroianni, S.
Messina, M.
Miuchi, K.
Molinario, A.
Morå, K.
Moriyama, S.
Mosbacher, Y.
Murra, M.
Naganoma, J.
Ni, K.
Oberlack, U.
Odgers, K.
Palacio, J.
Pelssers, B.
Peres, R.
Pienaar, J.
Pizzella, V.
Plante, G.
Qin, J.
Qiu, H.
García, D. Ramírez
Reichard, S.
Rocchetti, A.
Rupp, N.
Santos, J. M. F. dos
Sartorelli, G.
Šarčević, N.
Scheibelhut, M.
Schindler, S.
Schreiner, J.
Schulte, D.
Schumann, M.
Lavina, L. Scotto
Selvi, M.
Semeria, F.
Shagin, P.
Shockley, E.
Silva, M.
Simgen, H.
Takeda, A.
Therreau, C.
Thers, D.
Toschi, F.
Trinchero, G.
Tunnell, C.
Vargas, M.
Volta, G.
Wack, O.
Wang, H.
Wei, Y.
Weinheimer, C.
Weiss, M.
Wenz, D.
Westermann, J.
Wittweg, C.
Wulf, J.
Xu, Z.
Yamashita, M.
Ye, J.
Zavattini, G.
Zhang, Y.
Zhu, T.
Zopounidis, J. P.
collection PubMed
description The selection of low-radioactive construction materials is of utmost importance for the success of low-energy rare event search experiments. Besides radioactive contaminants in the bulk, the emanation of radioactive radon atoms from material surfaces attains increasing relevance in the effort to further reduce the background of such experiments. In this work, we present the [Formula: see text] Rn emanation measurements performed for the XENON1T dark matter experiment. Together with the bulk impurity screening campaign, the results enabled us to select the radio-purest construction materials, targeting a [Formula: see text] Rn activity concentration of [Formula: see text] in [Formula: see text] of xenon. The knowledge of the distribution of the [Formula: see text] Rn sources allowed us to selectively eliminate problematic components in the course of the experiment. The predictions from the emanation measurements were compared to data of the [Formula: see text] Rn activity concentration in XENON1T. The final [Formula: see text] Rn activity concentration of [Formula: see text] in the target of XENON1T is the lowest ever achieved in a xenon dark matter experiment.
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spelling pubmed-85500292021-10-29 [Formula: see text] Rn  emanation measurements for the XENON1T experiment Aprile, E. Aalbers, J. Agostini, F. Alfonsi, M. Althueser, L. Amaro, F. D. Antochi, V. C. Angelino, E. Angevaare, J. R. Arneodo, F. Barge, D. Baudis, L. Bauermeister, B. Bellagamba, L. Benabderrahmane, M. L. Berger, T. Breur, P. A. Brown, A. Brown, E. Bruenner, S. Bruno, G. Budnik, R. Capelli, C. Cardoso, J. M. R. Cichon, D. Cimmino, B. Clark, M. Coderre, D. Colijn, A. P. Conrad, J. Cussonneau, J. P. Decowski, M. P. Depoian, A. Di Gangi, P. Di Giovanni, A. Di Stefano, R. Diglio, S. Elykov, A. Eurin, G. Ferella, A. D. Fulgione, W. Gaemers, P. Gaior, R. Rosso, A. Gallo Galloway, M. Gao, F. Grandi, L. Garbini, M. Hasterok, C. Hils, C. Hiraide, K. Hoetzsch, L. Hogenbirk, E. Howlett, J. Iacovacci, M. Itow, Y. Joerg, F. Kato, N. Kazama, S. Kobayashi, M. Koltman, G. Kopec, A. Landsman, H. Lang, R. F. Levinson, L. Lin, Q. Lindemann, S. Lindner, M. Lombardi, F. Lopes, J. A. M. López Fune, E. Macolino, C. Mahlstedt, J. Manenti, L. Manfredini, A. Marignetti, F. Undagoitia, T. Marrodán Martens, K. Masbou, J. Masson, D. Mastroianni, S. Messina, M. Miuchi, K. Molinario, A. Morå, K. Moriyama, S. Mosbacher, Y. Murra, M. Naganoma, J. Ni, K. Oberlack, U. Odgers, K. Palacio, J. Pelssers, B. Peres, R. Pienaar, J. Pizzella, V. Plante, G. Qin, J. Qiu, H. García, D. Ramírez Reichard, S. Rocchetti, A. Rupp, N. Santos, J. M. F. dos Sartorelli, G. Šarčević, N. Scheibelhut, M. Schindler, S. Schreiner, J. Schulte, D. Schumann, M. Lavina, L. Scotto Selvi, M. Semeria, F. Shagin, P. Shockley, E. Silva, M. Simgen, H. Takeda, A. Therreau, C. Thers, D. Toschi, F. Trinchero, G. Tunnell, C. Vargas, M. Volta, G. Wack, O. Wang, H. Wei, Y. Weinheimer, C. Weiss, M. Wenz, D. Westermann, J. Wittweg, C. Wulf, J. Xu, Z. Yamashita, M. Ye, J. Zavattini, G. Zhang, Y. Zhu, T. Zopounidis, J. P. Eur Phys J C Part Fields Regular Article – Experimental Physics The selection of low-radioactive construction materials is of utmost importance for the success of low-energy rare event search experiments. Besides radioactive contaminants in the bulk, the emanation of radioactive radon atoms from material surfaces attains increasing relevance in the effort to further reduce the background of such experiments. In this work, we present the [Formula: see text] Rn emanation measurements performed for the XENON1T dark matter experiment. Together with the bulk impurity screening campaign, the results enabled us to select the radio-purest construction materials, targeting a [Formula: see text] Rn activity concentration of [Formula: see text] in [Formula: see text] of xenon. The knowledge of the distribution of the [Formula: see text] Rn sources allowed us to selectively eliminate problematic components in the course of the experiment. The predictions from the emanation measurements were compared to data of the [Formula: see text] Rn activity concentration in XENON1T. The final [Formula: see text] Rn activity concentration of [Formula: see text] in the target of XENON1T is the lowest ever achieved in a xenon dark matter experiment. Springer Berlin Heidelberg 2021-04-20 2021 /pmc/articles/PMC8550029/ /pubmed/34720714 http://dx.doi.org/10.1140/epjc/s10052-020-08777-z 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 Regular Article – Experimental Physics
Aprile, E.
Aalbers, J.
Agostini, F.
Alfonsi, M.
Althueser, L.
Amaro, F. D.
Antochi, V. C.
Angelino, E.
Angevaare, J. R.
Arneodo, F.
Barge, D.
Baudis, L.
Bauermeister, B.
Bellagamba, L.
Benabderrahmane, M. L.
Berger, T.
Breur, P. A.
Brown, A.
Brown, E.
Bruenner, S.
Bruno, G.
Budnik, R.
Capelli, C.
Cardoso, J. M. R.
Cichon, D.
Cimmino, B.
Clark, M.
Coderre, D.
Colijn, A. P.
Conrad, J.
Cussonneau, J. P.
Decowski, M. P.
Depoian, A.
Di Gangi, P.
Di Giovanni, A.
Di Stefano, R.
Diglio, S.
Elykov, A.
Eurin, G.
Ferella, A. D.
Fulgione, W.
Gaemers, P.
Gaior, R.
Rosso, A. Gallo
Galloway, M.
Gao, F.
Grandi, L.
Garbini, M.
Hasterok, C.
Hils, C.
Hiraide, K.
Hoetzsch, L.
Hogenbirk, E.
Howlett, J.
Iacovacci, M.
Itow, Y.
Joerg, F.
Kato, N.
Kazama, S.
Kobayashi, M.
Koltman, G.
Kopec, A.
Landsman, H.
Lang, R. F.
Levinson, L.
Lin, Q.
Lindemann, S.
Lindner, M.
Lombardi, F.
Lopes, J. A. M.
López Fune, E.
Macolino, C.
Mahlstedt, J.
Manenti, L.
Manfredini, A.
Marignetti, F.
Undagoitia, T. Marrodán
Martens, K.
Masbou, J.
Masson, D.
Mastroianni, S.
Messina, M.
Miuchi, K.
Molinario, A.
Morå, K.
Moriyama, S.
Mosbacher, Y.
Murra, M.
Naganoma, J.
Ni, K.
Oberlack, U.
Odgers, K.
Palacio, J.
Pelssers, B.
Peres, R.
Pienaar, J.
Pizzella, V.
Plante, G.
Qin, J.
Qiu, H.
García, D. Ramírez
Reichard, S.
Rocchetti, A.
Rupp, N.
Santos, J. M. F. dos
Sartorelli, G.
Šarčević, N.
Scheibelhut, M.
Schindler, S.
Schreiner, J.
Schulte, D.
Schumann, M.
Lavina, L. Scotto
Selvi, M.
Semeria, F.
Shagin, P.
Shockley, E.
Silva, M.
Simgen, H.
Takeda, A.
Therreau, C.
Thers, D.
Toschi, F.
Trinchero, G.
Tunnell, C.
Vargas, M.
Volta, G.
Wack, O.
Wang, H.
Wei, Y.
Weinheimer, C.
Weiss, M.
Wenz, D.
Westermann, J.
Wittweg, C.
Wulf, J.
Xu, Z.
Yamashita, M.
Ye, J.
Zavattini, G.
Zhang, Y.
Zhu, T.
Zopounidis, J. P.
[Formula: see text] Rn  emanation measurements for the XENON1T experiment
title [Formula: see text] Rn  emanation measurements for the XENON1T experiment
title_full [Formula: see text] Rn  emanation measurements for the XENON1T experiment
title_fullStr [Formula: see text] Rn  emanation measurements for the XENON1T experiment
title_full_unstemmed [Formula: see text] Rn  emanation measurements for the XENON1T experiment
title_short [Formula: see text] Rn  emanation measurements for the XENON1T experiment
title_sort [formula: see text] rn  emanation measurements for the xenon1t experiment
topic Regular Article – Experimental Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550029/
https://www.ncbi.nlm.nih.gov/pubmed/34720714
http://dx.doi.org/10.1140/epjc/s10052-020-08777-z
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AT lopesjam formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT lopezfunee formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT macolinoc formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT mahlstedtj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT manentil formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT manfredinia formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT marignettif formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT undagoitiatmarrodan formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT martensk formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT masbouj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT massond formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT mastroiannis formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT messinam formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT miuchik formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT molinarioa formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT morak formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT moriyamas formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT mosbachery formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT murram formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT naganomaj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT nik formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT oberlacku formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT odgersk formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT palacioj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT pelssersb formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT peresr formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT pienaarj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT pizzellav formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT planteg formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT qinj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT qiuh formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT garciadramirez formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT reichards formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT rocchettia formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT ruppn formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT santosjmfdos formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT sartorellig formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT sarcevicn formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT scheibelhutm formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT schindlers formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT schreinerj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT schulted formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT schumannm formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT lavinalscotto formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT selvim formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT semeriaf formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT shaginp formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT shockleye formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT silvam formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT simgenh formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT takedaa formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT therreauc formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT thersd formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT toschif formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT trincherog formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT tunnellc formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT vargasm formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT voltag formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT wacko formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT wangh formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT weiy formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT weinheimerc formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT weissm formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT wenzd formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT westermannj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT wittwegc formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT wulfj formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT xuz formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT yamashitam formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT yej formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT zavattinig formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT zhangy formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT zhut formulaseetextrnemanationmeasurementsforthexenon1texperiment
AT zopounidisjp formulaseetextrnemanationmeasurementsforthexenon1texperiment