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Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data

The DEAP-3600 detector searches for the scintillation signal from dark matter particles scattering on a 3.3 tonne liquid argon target. The largest background comes from [Formula: see text] beta decays and is suppressed using pulse-shape discrimination (PSD). We use two types of PSD estimator: the pr...

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Autores principales: Adhikari, P., Ajaj, R., Alpízar-Venegas, M., Amaudruz, P.-A., Auty, D. J., Batygov, M., Beltran, B., Benmansour, H., Bina, C. E., Bonatt, J., Bonivento, W., Boulay, M. G., Broerman, B., Bueno, J. F., Burghardt, P. M., Butcher, A., Cadeddu, M., Cai, B., Cárdenas-Montes, M., Cavuoti, S., Chen, M., Chen, Y., Cleveland, B. T., Corning, J. M., Cranshaw, D., Daugherty, S., DelGobbo, P., Dering, K., DiGioseffo, J., Di Stefano, P., Doria, L., Duncan, F. A., Dunford, M., Ellingwood, E., Erlandson, A., Farahani, S. S., Fatemighomi, N., Fiorillo, G., Florian, S., Flower, T., Ford, R. J., Gagnon, R., Gallacher, D., García Abia, P., Garg, S., Giampa, P., Goeldi, D., Golovko, V., Gorel, P., Graham, K., Grant, D. R., Grobov, A., Hallin, A. L., Hamstra, M., Harvey, P. J., Hearns, C., Hugues, T., Ilyasov, A., Joy, A., Jigmeddorj, B., Jillings, C. J., Kamaev, O., Kaur, G., Kemp, A., Kochanek, I., Kuźniak, M., Lai, M., Langrock, S., Lehnert, B., Leonhardt, A., Levashko, N., Li, X., Lidgard, J., Lindner, T., Lissia, M., Lock, J., Longo, G., Machulin, I., McDonald, A. B., McElroy, T., McGinn, T., McLaughlin, J. B., Mehdiyev, R., Mielnichuk, C., Monroe, J., Nadeau, P., Nantais, C., Ng, C., Noble, A. J., O’Dwyer, E., Oliviéro, G., Ouellet, C., Pal, S., Pasuthip, P., Peeters, S. J. M., Perry, M., Pesudo, V., Picciau, E., Piro, M.-C., Pollmann, T. R., Rand, E. T., Rethmeier, C., Retière, F., Rodríguez-García, I., Roszkowski, L., Ruhland, J. B., Sánchez-García, E., Santorelli, R., Sinclair, D., Skensved, P., Smith, B., Smith, N. J. T., Sonley, T., Soukup, J., Stainforth, R., Stone, C., Strickland, V., Stringer, M., Sur, B., Tang, J., Vázquez-Jáuregui, E., Viel, S., Walding, J., Waqar, M., Ward, M., Westerdale, S., Willis, J., Zuñiga-Reyes, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550104/
https://www.ncbi.nlm.nih.gov/pubmed/34720726
http://dx.doi.org/10.1140/epjc/s10052-021-09514-w
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author Adhikari, P.
Ajaj, R.
Alpízar-Venegas, M.
Amaudruz, P.-A.
Auty, D. J.
Batygov, M.
Beltran, B.
Benmansour, H.
Bina, C. E.
Bonatt, J.
Bonivento, W.
Boulay, M. G.
Broerman, B.
Bueno, J. F.
Burghardt, P. M.
Butcher, A.
Cadeddu, M.
Cai, B.
Cárdenas-Montes, M.
Cavuoti, S.
Chen, M.
Chen, Y.
Cleveland, B. T.
Corning, J. M.
Cranshaw, D.
Daugherty, S.
DelGobbo, P.
Dering, K.
DiGioseffo, J.
Di Stefano, P.
Doria, L.
Duncan, F. A.
Dunford, M.
Ellingwood, E.
Erlandson, A.
Farahani, S. S.
Fatemighomi, N.
Fiorillo, G.
Florian, S.
Flower, T.
Ford, R. J.
Gagnon, R.
Gallacher, D.
García Abia, P.
Garg, S.
Giampa, P.
Goeldi, D.
Golovko, V.
Gorel, P.
Graham, K.
Grant, D. R.
Grobov, A.
Hallin, A. L.
Hamstra, M.
Harvey, P. J.
Hearns, C.
Hugues, T.
Ilyasov, A.
Joy, A.
Jigmeddorj, B.
Jillings, C. J.
Kamaev, O.
Kaur, G.
Kemp, A.
Kochanek, I.
Kuźniak, M.
Lai, M.
Langrock, S.
Lehnert, B.
Leonhardt, A.
Levashko, N.
Li, X.
Lidgard, J.
Lindner, T.
Lissia, M.
Lock, J.
Longo, G.
Machulin, I.
McDonald, A. B.
McElroy, T.
McGinn, T.
McLaughlin, J. B.
Mehdiyev, R.
Mielnichuk, C.
Monroe, J.
Nadeau, P.
Nantais, C.
Ng, C.
Noble, A. J.
O’Dwyer, E.
Oliviéro, G.
Ouellet, C.
Pal, S.
Pasuthip, P.
Peeters, S. J. M.
Perry, M.
Pesudo, V.
Picciau, E.
Piro, M.-C.
Pollmann, T. R.
Rand, E. T.
Rethmeier, C.
Retière, F.
Rodríguez-García, I.
Roszkowski, L.
Ruhland, J. B.
Sánchez-García, E.
Santorelli, R.
Sinclair, D.
Skensved, P.
Smith, B.
Smith, N. J. T.
Sonley, T.
Soukup, J.
Stainforth, R.
Stone, C.
Strickland, V.
Stringer, M.
Sur, B.
Tang, J.
Vázquez-Jáuregui, E.
Viel, S.
Walding, J.
Waqar, M.
Ward, M.
Westerdale, S.
Willis, J.
Zuñiga-Reyes, A.
author_facet Adhikari, P.
Ajaj, R.
Alpízar-Venegas, M.
Amaudruz, P.-A.
Auty, D. J.
Batygov, M.
Beltran, B.
Benmansour, H.
Bina, C. E.
Bonatt, J.
Bonivento, W.
Boulay, M. G.
Broerman, B.
Bueno, J. F.
Burghardt, P. M.
Butcher, A.
Cadeddu, M.
Cai, B.
Cárdenas-Montes, M.
Cavuoti, S.
Chen, M.
Chen, Y.
Cleveland, B. T.
Corning, J. M.
Cranshaw, D.
Daugherty, S.
DelGobbo, P.
Dering, K.
DiGioseffo, J.
Di Stefano, P.
Doria, L.
Duncan, F. A.
Dunford, M.
Ellingwood, E.
Erlandson, A.
Farahani, S. S.
Fatemighomi, N.
Fiorillo, G.
Florian, S.
Flower, T.
Ford, R. J.
Gagnon, R.
Gallacher, D.
García Abia, P.
Garg, S.
Giampa, P.
Goeldi, D.
Golovko, V.
Gorel, P.
Graham, K.
Grant, D. R.
Grobov, A.
Hallin, A. L.
Hamstra, M.
Harvey, P. J.
Hearns, C.
Hugues, T.
Ilyasov, A.
Joy, A.
Jigmeddorj, B.
Jillings, C. J.
Kamaev, O.
Kaur, G.
Kemp, A.
Kochanek, I.
Kuźniak, M.
Lai, M.
Langrock, S.
Lehnert, B.
Leonhardt, A.
Levashko, N.
Li, X.
Lidgard, J.
Lindner, T.
Lissia, M.
Lock, J.
Longo, G.
Machulin, I.
McDonald, A. B.
McElroy, T.
McGinn, T.
McLaughlin, J. B.
Mehdiyev, R.
Mielnichuk, C.
Monroe, J.
Nadeau, P.
Nantais, C.
Ng, C.
Noble, A. J.
O’Dwyer, E.
Oliviéro, G.
Ouellet, C.
Pal, S.
Pasuthip, P.
Peeters, S. J. M.
Perry, M.
Pesudo, V.
Picciau, E.
Piro, M.-C.
Pollmann, T. R.
Rand, E. T.
Rethmeier, C.
Retière, F.
Rodríguez-García, I.
Roszkowski, L.
Ruhland, J. B.
Sánchez-García, E.
Santorelli, R.
Sinclair, D.
Skensved, P.
Smith, B.
Smith, N. J. T.
Sonley, T.
Soukup, J.
Stainforth, R.
Stone, C.
Strickland, V.
Stringer, M.
Sur, B.
Tang, J.
Vázquez-Jáuregui, E.
Viel, S.
Walding, J.
Waqar, M.
Ward, M.
Westerdale, S.
Willis, J.
Zuñiga-Reyes, A.
author_sort Adhikari, P.
collection PubMed
description The DEAP-3600 detector searches for the scintillation signal from dark matter particles scattering on a 3.3 tonne liquid argon target. The largest background comes from [Formula: see text] beta decays and is suppressed using pulse-shape discrimination (PSD). We use two types of PSD estimator: the prompt-fraction, which considers the fraction of the scintillation signal in a narrow and a wide time window around the event peak, and the log-likelihood-ratio, which compares the observed photon arrival times to a signal and a background model. We furthermore use two algorithms to determine the number of photons detected at a given time: (1) simply dividing the charge of each PMT pulse by the mean single-photoelectron charge, and (2) a likelihood analysis that considers the probability to detect a certain number of photons at a given time, based on a model for the scintillation pulse shape and for afterpulsing in the light detectors. The prompt-fraction performs approximately as well as the log-likelihood-ratio PSD algorithm if the photon detection times are not biased by detector effects. We explain this result using a model for the information carried by scintillation photons as a function of the time when they are detected.
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spelling pubmed-85501042021-10-29 Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data Adhikari, P. Ajaj, R. Alpízar-Venegas, M. Amaudruz, P.-A. Auty, D. J. Batygov, M. Beltran, B. Benmansour, H. Bina, C. E. Bonatt, J. Bonivento, W. Boulay, M. G. Broerman, B. Bueno, J. F. Burghardt, P. M. Butcher, A. Cadeddu, M. Cai, B. Cárdenas-Montes, M. Cavuoti, S. Chen, M. Chen, Y. Cleveland, B. T. Corning, J. M. Cranshaw, D. Daugherty, S. DelGobbo, P. Dering, K. DiGioseffo, J. Di Stefano, P. Doria, L. Duncan, F. A. Dunford, M. Ellingwood, E. Erlandson, A. Farahani, S. S. Fatemighomi, N. Fiorillo, G. Florian, S. Flower, T. Ford, R. J. Gagnon, R. Gallacher, D. García Abia, P. Garg, S. Giampa, P. Goeldi, D. Golovko, V. Gorel, P. Graham, K. Grant, D. R. Grobov, A. Hallin, A. L. Hamstra, M. Harvey, P. J. Hearns, C. Hugues, T. Ilyasov, A. Joy, A. Jigmeddorj, B. Jillings, C. J. Kamaev, O. Kaur, G. Kemp, A. Kochanek, I. Kuźniak, M. Lai, M. Langrock, S. Lehnert, B. Leonhardt, A. Levashko, N. Li, X. Lidgard, J. Lindner, T. Lissia, M. Lock, J. Longo, G. Machulin, I. McDonald, A. B. McElroy, T. McGinn, T. McLaughlin, J. B. Mehdiyev, R. Mielnichuk, C. Monroe, J. Nadeau, P. Nantais, C. Ng, C. Noble, A. J. O’Dwyer, E. Oliviéro, G. Ouellet, C. Pal, S. Pasuthip, P. Peeters, S. J. M. Perry, M. Pesudo, V. Picciau, E. Piro, M.-C. Pollmann, T. R. Rand, E. T. Rethmeier, C. Retière, F. Rodríguez-García, I. Roszkowski, L. Ruhland, J. B. Sánchez-García, E. Santorelli, R. Sinclair, D. Skensved, P. Smith, B. Smith, N. J. T. Sonley, T. Soukup, J. Stainforth, R. Stone, C. Strickland, V. Stringer, M. Sur, B. Tang, J. Vázquez-Jáuregui, E. Viel, S. Walding, J. Waqar, M. Ward, M. Westerdale, S. Willis, J. Zuñiga-Reyes, A. Eur Phys J C Part Fields Regular Article - Experimental Physics The DEAP-3600 detector searches for the scintillation signal from dark matter particles scattering on a 3.3 tonne liquid argon target. The largest background comes from [Formula: see text] beta decays and is suppressed using pulse-shape discrimination (PSD). We use two types of PSD estimator: the prompt-fraction, which considers the fraction of the scintillation signal in a narrow and a wide time window around the event peak, and the log-likelihood-ratio, which compares the observed photon arrival times to a signal and a background model. We furthermore use two algorithms to determine the number of photons detected at a given time: (1) simply dividing the charge of each PMT pulse by the mean single-photoelectron charge, and (2) a likelihood analysis that considers the probability to detect a certain number of photons at a given time, based on a model for the scintillation pulse shape and for afterpulsing in the light detectors. The prompt-fraction performs approximately as well as the log-likelihood-ratio PSD algorithm if the photon detection times are not biased by detector effects. We explain this result using a model for the information carried by scintillation photons as a function of the time when they are detected. Springer Berlin Heidelberg 2021-09-16 2021 /pmc/articles/PMC8550104/ /pubmed/34720726 http://dx.doi.org/10.1140/epjc/s10052-021-09514-w 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
Adhikari, P.
Ajaj, R.
Alpízar-Venegas, M.
Amaudruz, P.-A.
Auty, D. J.
Batygov, M.
Beltran, B.
Benmansour, H.
Bina, C. E.
Bonatt, J.
Bonivento, W.
Boulay, M. G.
Broerman, B.
Bueno, J. F.
Burghardt, P. M.
Butcher, A.
Cadeddu, M.
Cai, B.
Cárdenas-Montes, M.
Cavuoti, S.
Chen, M.
Chen, Y.
Cleveland, B. T.
Corning, J. M.
Cranshaw, D.
Daugherty, S.
DelGobbo, P.
Dering, K.
DiGioseffo, J.
Di Stefano, P.
Doria, L.
Duncan, F. A.
Dunford, M.
Ellingwood, E.
Erlandson, A.
Farahani, S. S.
Fatemighomi, N.
Fiorillo, G.
Florian, S.
Flower, T.
Ford, R. J.
Gagnon, R.
Gallacher, D.
García Abia, P.
Garg, S.
Giampa, P.
Goeldi, D.
Golovko, V.
Gorel, P.
Graham, K.
Grant, D. R.
Grobov, A.
Hallin, A. L.
Hamstra, M.
Harvey, P. J.
Hearns, C.
Hugues, T.
Ilyasov, A.
Joy, A.
Jigmeddorj, B.
Jillings, C. J.
Kamaev, O.
Kaur, G.
Kemp, A.
Kochanek, I.
Kuźniak, M.
Lai, M.
Langrock, S.
Lehnert, B.
Leonhardt, A.
Levashko, N.
Li, X.
Lidgard, J.
Lindner, T.
Lissia, M.
Lock, J.
Longo, G.
Machulin, I.
McDonald, A. B.
McElroy, T.
McGinn, T.
McLaughlin, J. B.
Mehdiyev, R.
Mielnichuk, C.
Monroe, J.
Nadeau, P.
Nantais, C.
Ng, C.
Noble, A. J.
O’Dwyer, E.
Oliviéro, G.
Ouellet, C.
Pal, S.
Pasuthip, P.
Peeters, S. J. M.
Perry, M.
Pesudo, V.
Picciau, E.
Piro, M.-C.
Pollmann, T. R.
Rand, E. T.
Rethmeier, C.
Retière, F.
Rodríguez-García, I.
Roszkowski, L.
Ruhland, J. B.
Sánchez-García, E.
Santorelli, R.
Sinclair, D.
Skensved, P.
Smith, B.
Smith, N. J. T.
Sonley, T.
Soukup, J.
Stainforth, R.
Stone, C.
Strickland, V.
Stringer, M.
Sur, B.
Tang, J.
Vázquez-Jáuregui, E.
Viel, S.
Walding, J.
Waqar, M.
Ward, M.
Westerdale, S.
Willis, J.
Zuñiga-Reyes, A.
Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title_full Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title_fullStr Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title_full_unstemmed Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title_short Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
title_sort pulse-shape discrimination against low-energy ar-39 beta decays in liquid argon with 4.5 tonne-years of deap-3600 data
topic Regular Article - Experimental Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550104/
https://www.ncbi.nlm.nih.gov/pubmed/34720726
http://dx.doi.org/10.1140/epjc/s10052-021-09514-w
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AT hallinal pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT hamstram pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT harveypj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT hearnsc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT huguest pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT ilyasova pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT joya pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT jigmeddorjb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT jillingscj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT kamaevo pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT kaurg pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT kempa pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT kochaneki pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT kuzniakm pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT laim pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT langrocks pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lehnertb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT leonhardta pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT levashkon pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lix pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lidgardj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lindnert pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lissiam pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT lockj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT longog pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT machulini pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mcdonaldab pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mcelroyt pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mcginnt pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mclaughlinjb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mehdiyevr pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT mielnichukc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT monroej pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT nadeaup pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT nantaisc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT ngc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT nobleaj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT odwyere pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT olivierog pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT ouelletc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT pals pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT pasuthipp pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT peeterssjm pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT perrym pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT pesudov pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT picciaue pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT piromc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT pollmanntr pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT randet pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT rethmeierc pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT retieref pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT rodriguezgarciai pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT roszkowskil pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT ruhlandjb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT sanchezgarciae pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT santorellir pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT sinclaird pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT skensvedp pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT smithb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT smithnjt pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT sonleyt pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT soukupj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT stainforthr pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT stonec pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT stricklandv pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT stringerm pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT surb pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT tangj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT vazquezjaureguie pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT viels pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT waldingj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT waqarm pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT wardm pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT westerdales pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT willisj pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT zunigareyesa pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data
AT pulseshapediscriminationagainstlowenergyar39betadecaysinliquidargonwith45tonneyearsofdeap3600data