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Main Authors: MicroBooNE collaboration, Abratenko, P., Aldana, D. Andrade, Arellano, L., Asaadi, J., Ashkenazi, A., Balasubramanian, S., Baller, B., Barnard, A., Barr, G., Barrow, D., Barrow, J., Basque, V., Bateman, J., Behera, B., Rodrigues, O. Benevides, Berkman, S., Bhat, A., Bhattacharya, M., Bhelande, V., Bishai, M., Blake, A., Bogart, B., Bolton, T., Brunetti, M. B., Camilleri, L., Caratelli, D., Cavanna, F., Cerati, G., Chappell, A., 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., Duffy, K., Dytman, S., Eberly, B., Englezos, P., Ereditato, A., Evans, J. J., Fang, C., Fleming, B. T., Foreman, W., Franco, D., Furmanski, A. P., Gao, F., Garcia-Gamez, D., Gardiner, S., Ge, G., Gollapinni, S., Gramellini, E., Green, P., Greenlee, H., Gu, L., Gu, W., Guenette, R., Guzowski, P., Hagaman, L., Handley, M. D., Hen, O., Hilgenberg, C., Horton-Smith, G. A., Hussain, A., Irwin, B., Ismail, M. S., James, C., Ji, X., Jo, J. H., Johnson, R. A., Kalra, D., Karagiorgi, G., Ketchum, W., Kirby, M., Kobilarcik, T., Kumar, K., Lane, N., Li, J. -Y., Li, Y., Lin, K., Littlejohn, B. R., Liu, L., Louis, W. C., Luo, X., Mahmud, T., Majeed, N., Mariani, C., Marshall, J., Martinez, N., Caicedo, D. A. Martinez, Martynenko, S., Mastbaum, A., Mawby, I., McConkey, N., Mellet, L., Mendez, J., Micallef, J., 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., Nguyen, C., 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., Pletcher, K., Pophale, I., Qian, X., Raaf, J. L., Radeka, V., Rafique, A., Reggiani-Guzzo, M., Rondon, J. Rodriguez, Rosenberg, M., Ross-Lonergan, M., Safa, I., Schmitz, D. W., Schukraft, A., Seligman, W., Shaevitz, M. H., Sharankova, R., Shi, J., Smith, A., Snider, E. L., Soldner-Rembold, S., Spitz, J., Stancari, M., John, J. St., Strauss, T., Szelc, A. M., Taniuchi, N., Terao, K., Thorpe, C., Torbunov, D., Totani, D., Toups, M., Trettin, A., Tsai, Y. -T., Tyler, J., Uchida, M. A., Usher, T., Viren, B., Wang, J., Weber, M., Wei, H., White, A. J., Wolbers, S., Wongjirad, T., Wresilo, K., Wu, W., Yandel, E., Yang, T., Yates, L. E., Yu, H. W., Zeller, G. P., Zennamo, J., Zhang, C.
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2509.03628
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author MicroBooNE collaboration
Abratenko, P.
Aldana, D. Andrade
Arellano, L.
Asaadi, J.
Ashkenazi, A.
Balasubramanian, S.
Baller, B.
Barnard, A.
Barr, G.
Barrow, D.
Barrow, J.
Basque, V.
Bateman, J.
Behera, B.
Rodrigues, O. Benevides
Berkman, S.
Bhat, A.
Bhattacharya, M.
Bhelande, V.
Bishai, M.
Blake, A.
Bogart, B.
Bolton, T.
Brunetti, M. B.
Camilleri, L.
Caratelli, D.
Cavanna, F.
Cerati, G.
Chappell, A.
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.
Duffy, K.
Dytman, S.
Eberly, B.
Englezos, P.
Ereditato, A.
Evans, J. J.
Fang, C.
Fleming, B. T.
Foreman, W.
Franco, D.
Furmanski, A. P.
Gao, F.
Garcia-Gamez, D.
Gardiner, S.
Ge, G.
Gollapinni, S.
Gramellini, E.
Green, P.
Greenlee, H.
Gu, L.
Gu, W.
Guenette, R.
Guzowski, P.
Hagaman, L.
Handley, M. D.
Hen, O.
Hilgenberg, C.
Horton-Smith, G. A.
Hussain, A.
Irwin, B.
Ismail, M. S.
James, C.
Ji, X.
Jo, J. H.
Johnson, R. A.
Kalra, D.
Karagiorgi, G.
Ketchum, W.
Kirby, M.
Kobilarcik, T.
Kumar, K.
Lane, N.
Li, J. -Y.
Li, Y.
Lin, K.
Littlejohn, B. R.
Liu, L.
Louis, W. C.
Luo, X.
Mahmud, T.
Majeed, N.
Mariani, C.
Marshall, J.
Martinez, N.
Caicedo, D. A. Martinez
Martynenko, S.
Mastbaum, A.
Mawby, I.
McConkey, N.
Mellet, L.
Mendez, J.
Micallef, J.
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.
Nguyen, C.
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.
Pletcher, K.
Pophale, I.
Qian, X.
Raaf, J. L.
Radeka, V.
Rafique, A.
Reggiani-Guzzo, M.
Rondon, J. Rodriguez
Rosenberg, M.
Ross-Lonergan, M.
Safa, I.
Schmitz, D. W.
Schukraft, A.
Seligman, W.
Shaevitz, M. H.
Sharankova, R.
Shi, J.
Smith, A.
Snider, E. L.
Soldner-Rembold, S.
Spitz, J.
Stancari, M.
John, J. St.
Strauss, T.
Szelc, A. M.
Taniuchi, N.
Terao, K.
Thorpe, C.
Torbunov, D.
Totani, D.
Toups, M.
Trettin, A.
Tsai, Y. -T.
Tyler, J.
Uchida, M. A.
Usher, T.
Viren, B.
Wang, J.
Weber, M.
Wei, H.
White, A. J.
Wolbers, S.
Wongjirad, T.
Wresilo, K.
Wu, W.
Yandel, E.
Yang, T.
Yates, L. E.
Yu, H. W.
Zeller, G. P.
Zennamo, J.
Zhang, C.
author_facet MicroBooNE collaboration
Abratenko, P.
Aldana, D. Andrade
Arellano, L.
Asaadi, J.
Ashkenazi, A.
Balasubramanian, S.
Baller, B.
Barnard, A.
Barr, G.
Barrow, D.
Barrow, J.
Basque, V.
Bateman, J.
Behera, B.
Rodrigues, O. Benevides
Berkman, S.
Bhat, A.
Bhattacharya, M.
Bhelande, V.
Bishai, M.
Blake, A.
Bogart, B.
Bolton, T.
Brunetti, M. B.
Camilleri, L.
Caratelli, D.
Cavanna, F.
Cerati, G.
Chappell, A.
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.
Duffy, K.
Dytman, S.
Eberly, B.
Englezos, P.
Ereditato, A.
Evans, J. J.
Fang, C.
Fleming, B. T.
Foreman, W.
Franco, D.
Furmanski, A. P.
Gao, F.
Garcia-Gamez, D.
Gardiner, S.
Ge, G.
Gollapinni, S.
Gramellini, E.
Green, P.
Greenlee, H.
Gu, L.
Gu, W.
Guenette, R.
Guzowski, P.
Hagaman, L.
Handley, M. D.
Hen, O.
Hilgenberg, C.
Horton-Smith, G. A.
Hussain, A.
Irwin, B.
Ismail, M. S.
James, C.
Ji, X.
Jo, J. H.
Johnson, R. A.
Kalra, D.
Karagiorgi, G.
Ketchum, W.
Kirby, M.
Kobilarcik, T.
Kumar, K.
Lane, N.
Li, J. -Y.
Li, Y.
Lin, K.
Littlejohn, B. R.
Liu, L.
Louis, W. C.
Luo, X.
Mahmud, T.
Majeed, N.
Mariani, C.
Marshall, J.
Martinez, N.
Caicedo, D. A. Martinez
Martynenko, S.
Mastbaum, A.
Mawby, I.
McConkey, N.
Mellet, L.
Mendez, J.
Micallef, J.
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.
Nguyen, C.
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.
Pletcher, K.
Pophale, I.
Qian, X.
Raaf, J. L.
Radeka, V.
Rafique, A.
Reggiani-Guzzo, M.
Rondon, J. Rodriguez
Rosenberg, M.
Ross-Lonergan, M.
Safa, I.
Schmitz, D. W.
Schukraft, A.
Seligman, W.
Shaevitz, M. H.
Sharankova, R.
Shi, J.
Smith, A.
Snider, E. L.
Soldner-Rembold, S.
Spitz, J.
Stancari, M.
John, J. St.
Strauss, T.
Szelc, A. M.
Taniuchi, N.
Terao, K.
Thorpe, C.
Torbunov, D.
Totani, D.
Toups, M.
Trettin, A.
Tsai, Y. -T.
Tyler, J.
Uchida, M. A.
Usher, T.
Viren, B.
Wang, J.
Weber, M.
Wei, H.
White, A. J.
Wolbers, S.
Wongjirad, T.
Wresilo, K.
Wu, W.
Yandel, E.
Yang, T.
Yates, L. E.
Yu, H. W.
Zeller, G. P.
Zennamo, J.
Zhang, C.
contents We present flux-averaged charged-current $ν_μ$ cross-section measurements on argon for final states containing exactly one $π^\pm$ and no other hadrons except nucleons. The analysis uses data from the MicroBooNE experiment in the Booster Neutrino Beam, corresponding to $1.11 \times 10^{21}$ protons on target. Total and single-differential cross-section measurements are provided within a phase space restricted to muon momenta above 150 MeV, pion momenta above 100 MeV, and muon-pion opening angles smaller than 2.65 rad. Differential cross sections are reported with respect to the scattering angles of the muon and pion relative to the beam direction, their momenta, and their combined opening angle. The differential cross section with respect to muon momentum is based on a subset of selected events with the muon track fully contained in the detector, whereas the cross section with respect to pion momentum is based on a subset of selected events rich in pions that have not hadronically scattered on the argon before coming to rest. The latter has not been measured on argon before. The total cross section is measured as $(3.75~\pm~0.07~\textrm{(stat.)}~\pm~0.80~\textrm{(syst.)}) \times 10^{-38} \, \text{cm}^2/\text{Ar}$ at a mean energy of approximately 0.8 GeV. Comparisons of the measured cross sections with predictions from multiple neutrino-nucleus interaction generators show good overall agreement, except at very forward muon angles.
format Preprint
id arxiv_https___arxiv_org_abs_2509_03628
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Measurement of single charged pion production in charged-current $ν_μ$-Ar interactions with the MicroBooNE detector
MicroBooNE collaboration
Abratenko, P.
Aldana, D. Andrade
Arellano, L.
Asaadi, J.
Ashkenazi, A.
Balasubramanian, S.
Baller, B.
Barnard, A.
Barr, G.
Barrow, D.
Barrow, J.
Basque, V.
Bateman, J.
Behera, B.
Rodrigues, O. Benevides
Berkman, S.
Bhat, A.
Bhattacharya, M.
Bhelande, V.
Bishai, M.
Blake, A.
Bogart, B.
Bolton, T.
Brunetti, M. B.
Camilleri, L.
Caratelli, D.
Cavanna, F.
Cerati, G.
Chappell, A.
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.
Duffy, K.
Dytman, S.
Eberly, B.
Englezos, P.
Ereditato, A.
Evans, J. J.
Fang, C.
Fleming, B. T.
Foreman, W.
Franco, D.
Furmanski, A. P.
Gao, F.
Garcia-Gamez, D.
Gardiner, S.
Ge, G.
Gollapinni, S.
Gramellini, E.
Green, P.
Greenlee, H.
Gu, L.
Gu, W.
Guenette, R.
Guzowski, P.
Hagaman, L.
Handley, M. D.
Hen, O.
Hilgenberg, C.
Horton-Smith, G. A.
Hussain, A.
Irwin, B.
Ismail, M. S.
James, C.
Ji, X.
Jo, J. H.
Johnson, R. A.
Kalra, D.
Karagiorgi, G.
Ketchum, W.
Kirby, M.
Kobilarcik, T.
Kumar, K.
Lane, N.
Li, J. -Y.
Li, Y.
Lin, K.
Littlejohn, B. R.
Liu, L.
Louis, W. C.
Luo, X.
Mahmud, T.
Majeed, N.
Mariani, C.
Marshall, J.
Martinez, N.
Caicedo, D. A. Martinez
Martynenko, S.
Mastbaum, A.
Mawby, I.
McConkey, N.
Mellet, L.
Mendez, J.
Micallef, J.
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.
Nguyen, C.
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.
Pletcher, K.
Pophale, I.
Qian, X.
Raaf, J. L.
Radeka, V.
Rafique, A.
Reggiani-Guzzo, M.
Rondon, J. Rodriguez
Rosenberg, M.
Ross-Lonergan, M.
Safa, I.
Schmitz, D. W.
Schukraft, A.
Seligman, W.
Shaevitz, M. H.
Sharankova, R.
Shi, J.
Smith, A.
Snider, E. L.
Soldner-Rembold, S.
Spitz, J.
Stancari, M.
John, J. St.
Strauss, T.
Szelc, A. M.
Taniuchi, N.
Terao, K.
Thorpe, C.
Torbunov, D.
Totani, D.
Toups, M.
Trettin, A.
Tsai, Y. -T.
Tyler, J.
Uchida, M. A.
Usher, T.
Viren, B.
Wang, J.
Weber, M.
Wei, H.
White, A. J.
Wolbers, S.
Wongjirad, T.
Wresilo, K.
Wu, W.
Yandel, E.
Yang, T.
Yates, L. E.
Yu, H. W.
Zeller, G. P.
Zennamo, J.
Zhang, C.
High Energy Physics - Experiment
We present flux-averaged charged-current $ν_μ$ cross-section measurements on argon for final states containing exactly one $π^\pm$ and no other hadrons except nucleons. The analysis uses data from the MicroBooNE experiment in the Booster Neutrino Beam, corresponding to $1.11 \times 10^{21}$ protons on target. Total and single-differential cross-section measurements are provided within a phase space restricted to muon momenta above 150 MeV, pion momenta above 100 MeV, and muon-pion opening angles smaller than 2.65 rad. Differential cross sections are reported with respect to the scattering angles of the muon and pion relative to the beam direction, their momenta, and their combined opening angle. The differential cross section with respect to muon momentum is based on a subset of selected events with the muon track fully contained in the detector, whereas the cross section with respect to pion momentum is based on a subset of selected events rich in pions that have not hadronically scattered on the argon before coming to rest. The latter has not been measured on argon before. The total cross section is measured as $(3.75~\pm~0.07~\textrm{(stat.)}~\pm~0.80~\textrm{(syst.)}) \times 10^{-38} \, \text{cm}^2/\text{Ar}$ at a mean energy of approximately 0.8 GeV. Comparisons of the measured cross sections with predictions from multiple neutrino-nucleus interaction generators show good overall agreement, except at very forward muon angles.
title Measurement of single charged pion production in charged-current $ν_μ$-Ar interactions with the MicroBooNE detector
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2509.03628