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First demonstration for a LArTPC-based search for intranuclear neutron-antineutron transitions and annihilation in $^{40}$Ar using the MicroBooNE detector

Authors :
MicroBooNE collaboration
Abratenko, P.
Alterkait, O.
Aldana, D. Andrade
Arellano, L.
Asaadi, J.
Ashkenazi, A.
Balasubramanian, S.
Baller, B.
Barr, G.
Barrow, D.
Barrow, J.
Basque, V.
Rodrigues, O. Benevides
Berkman, S.
Bhanderi, A.
Bhat, A.
Bhattacharya, M.
Bishai, M.
Blake, A.
Bogart, B.
Bolton, T.
Book, J. Y.
Camilleri, L.
Cao, Y.
Caratelli, D.
Terrazas, I. Caro
Cavanna, F.
Cerati, G.
Chen, Y.
Conrad, J. M.
Convery, M.
Cooper-Troendle, L.
Crespo-Anadon, J. I.
Cross, R.
Del Tutto, M.
Dennis, S. R.
Detje, P.
Devitt, A.
Diurba, R.
Djurcic, Z.
Dorrill, R.
Duffy, K.
Dytman, S.
Eberly, B.
Englezos, P.
Ereditato, A.
Evans, J. J.
Fine, R.
Finnerud, O. G.
Fleming, B. T.
Foppiani, N.
Foreman, W.
Franco, D.
Furmanski, A. P.
Garcia-Gamez, D.
Gardiner, S.
Ge, G.
Gollapinni, S.
Goodwin, O.
Gramellini, E.
Green, P.
Greenlee, H.
Gu, W.
Guenette, R.
Guzowski, P.
Hagaman, L.
Hen, O.
Hicks, R.
Hilgenberg, C.
Horton-Smith, G. A.
Imani, Z.
Irwin, B.
Itay, R.
James, C.
Ji, X.
Jiang, L.
Jo, J. H.
Johnson, R. A.
Jwa, Y. J.
Kalra, D.
Kamp, N.
Karagiorgi, G.
Ketchum, W.
Kirby, M.
Kobilarcik, T.
Kreslo, I.
Leibovitch, M. B.
Lepetic, I.
Li, J. -Y.
Li, K.
Li, Y.
Lin, K.
Littlejohn, B. R.
Liu, H.
Louis, W. C.
Luo, X.
Mariani, C.
Marsden, D.
Marshall, J.
Martinez, N.
Caicedo, D. A. Martinez
Martynenko, S.
Mastbaum, A.
McConkey, N.
Meddage, V.
Micallef, J.
Miller, K.
Mistry, K.
Mohayai, T.
Mogan, A.
Mooney, M.
Moor, A. F.
Moore, C. D.
Lepin, L. Mora
Moudgalya, M. M.
Babu, S. Mulleria
Naples, D.
Navrer-Agasson, A.
Nayak, N.
Nebot-Guinot, M.
Nowak, J.
Oza, N.
Palamara, O.
Pallat, N.
Paolone, V.
Papadopoulou, A.
Papavassiliou, V.
Parkinson, H.
Pate, S. F.
Patel, N.
Pavlovic, Z.
Piasetzky, E.
Ponce-Pinto, I.
Pophale, I.
Qian, X.
Raaf, J. L.
Radeka, V.
Rafique, A.
Reggiani-Guzzo, M.
Ren, L.
Rochester, L.
Rondon, J. Rodriguez
Rosenberg, M.
Ross-Lonergan, M.
von Rohr, C. Rudolph
Safa, I.
Scanavini, G.
Schmitz, D. W.
Schukraft, A.
Seligman, W.
Shaevitz, M. H.
Sharankova, R.
Shi, J.
Snider, E. L.
Soderberg, M.
Soldner-Rembold, S.
Spitz, J.
Stancari, M.
John, J. St.
Strauss, T.
Szelc, A. M.
Tang, W.
Taniuchi, N.
Terao, K.
Thorpe, C.
Torbunov, D.
Totani, D.
Toups, M.
Tsai, Y. -T.
Tyler, J.
Uchida, M. A.
Usher, T.
Viren, B.
Weber, M.
Wei, H.
White, A. J.
Wolbers, S.
Wongjirad, T.
Wospakrik, M.
Wresilo, K.
Wright, N.
Wu, W.
Yandel, E.
Yang, T.
Yates, L. E.
Yu, H. W.
Zeller, G. P.
Zennamo, J.
Zhang, C.
MicroBooNE collaboration
Abratenko, P.
Alterkait, O.
Aldana, D. Andrade
Arellano, L.
Asaadi, J.
Ashkenazi, A.
Balasubramanian, S.
Baller, B.
Barr, G.
Barrow, D.
Barrow, J.
Basque, V.
Rodrigues, O. Benevides
Berkman, S.
Bhanderi, A.
Bhat, A.
Bhattacharya, M.
Bishai, M.
Blake, A.
Bogart, B.
Bolton, T.
Book, J. Y.
Camilleri, L.
Cao, Y.
Caratelli, D.
Terrazas, I. Caro
Cavanna, F.
Cerati, G.
Chen, Y.
Conrad, J. M.
Convery, M.
Cooper-Troendle, L.
Crespo-Anadon, J. I.
Cross, R.
Del Tutto, M.
Dennis, S. R.
Detje, P.
Devitt, A.
Diurba, R.
Djurcic, Z.
Dorrill, R.
Duffy, K.
Dytman, S.
Eberly, B.
Englezos, P.
Ereditato, A.
Evans, J. J.
Fine, R.
Finnerud, O. G.
Fleming, B. T.
Foppiani, N.
Foreman, W.
Franco, D.
Furmanski, A. P.
Garcia-Gamez, D.
Gardiner, S.
Ge, G.
Gollapinni, S.
Goodwin, O.
Gramellini, E.
Green, P.
Greenlee, H.
Gu, W.
Guenette, R.
Guzowski, P.
Hagaman, L.
Hen, O.
Hicks, R.
Hilgenberg, C.
Horton-Smith, G. A.
Imani, Z.
Irwin, B.
Itay, R.
James, C.
Ji, X.
Jiang, L.
Jo, J. H.
Johnson, R. A.
Jwa, Y. J.
Kalra, D.
Kamp, N.
Karagiorgi, G.
Ketchum, W.
Kirby, M.
Kobilarcik, T.
Kreslo, I.
Leibovitch, M. B.
Lepetic, I.
Li, J. -Y.
Li, K.
Li, Y.
Lin, K.
Littlejohn, B. R.
Liu, H.
Louis, W. C.
Luo, X.
Mariani, C.
Marsden, D.
Marshall, J.
Martinez, N.
Caicedo, D. A. Martinez
Martynenko, S.
Mastbaum, A.
McConkey, N.
Meddage, V.
Micallef, J.
Miller, K.
Mistry, K.
Mohayai, T.
Mogan, A.
Mooney, M.
Moor, A. F.
Moore, C. D.
Lepin, L. Mora
Moudgalya, M. M.
Babu, S. Mulleria
Naples, D.
Navrer-Agasson, A.
Nayak, N.
Nebot-Guinot, M.
Nowak, J.
Oza, N.
Palamara, O.
Pallat, N.
Paolone, V.
Papadopoulou, A.
Papavassiliou, V.
Parkinson, H.
Pate, S. F.
Patel, N.
Pavlovic, Z.
Piasetzky, E.
Ponce-Pinto, I.
Pophale, I.
Qian, X.
Raaf, J. L.
Radeka, V.
Rafique, A.
Reggiani-Guzzo, M.
Ren, L.
Rochester, L.
Rondon, J. Rodriguez
Rosenberg, M.
Ross-Lonergan, M.
von Rohr, C. Rudolph
Safa, I.
Scanavini, G.
Schmitz, D. W.
Schukraft, A.
Seligman, W.
Shaevitz, M. H.
Sharankova, R.
Shi, J.
Snider, E. L.
Soderberg, M.
Soldner-Rembold, S.
Spitz, J.
Stancari, M.
John, J. St.
Strauss, T.
Szelc, A. M.
Tang, W.
Taniuchi, N.
Terao, K.
Thorpe, C.
Torbunov, D.
Totani, D.
Toups, M.
Tsai, Y. -T.
Tyler, J.
Uchida, M. A.
Usher, T.
Viren, B.
Weber, M.
Wei, H.
White, A. J.
Wolbers, S.
Wongjirad, T.
Wospakrik, M.
Wresilo, K.
Wright, N.
Wu, W.
Yandel, E.
Yang, T.
Yates, L. E.
Yu, H. W.
Zeller, G. P.
Zennamo, J.
Zhang, C.
Publication Year :
2023

Abstract

In this paper, we present a novel methodology to search for intranuclear neutron-antineutron transition ($n\rightarrow\bar{n}$) followed by annihilation within an $^{40}$Ar nucleus, using the MicroBooNE liquid argon time projection chamber (LArTPC) detector. A discovery of $n\rightarrow\bar{n}$ transition or increased lower limit on the lifetime of this process would either constitute physics beyond the Standard Model or greatly constrain theories of baryogenesis, respectively. The approach presented in this paper makes use of deep learning methods to select $n\rightarrow\bar{n}$ events based on their unique features and differentiate them from cosmogenic backgrounds. The achieved signal and background efficiencies are (70$\pm$6)\% and (0.0020$\pm$0.0003)\%, respectively. A demonstration of a search is performed with a data set corresponding to an exposure of $3.32 \times10^{26}\,$neutron-years, and where the background rate is constrained through direct measurement, assuming the presence of a negligible signal. With this approach, no excess of events over the background prediction is observed, setting a demonstrative lower bound on the $n\rightarrow\bar{n}$ lifetime in $^{40}$Ar of $\tau_{\textrm m} > 1.1\times10^{26}\,$years, and on the free $n\rightarrow\bar{n}$ transition time of $\tau_{\textrm n-\bar{n}} > 2.6\times10^{5}\,$s, each at the $90\%$ confidence level. This analysis represents a first-ever proof-of-principle demonstration of the ability to search for this rare process in LArTPCs with high efficiency and low background.<br />Comment: 11 pages, 6 figures, 6 tables

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1396639136
Document Type :
Electronic Resource