nuSCOPE: A short-baseline neutrino beam at CERN for high-precision cross-section measurements

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Main Authors: Acerbi, F., Andreopoulos, C., Angelis, I., Roldan, A. Baratto, Bomben, L., Bonesini, M., Bramati, F., Branca, A., Brizzolari, C., Brunetti, G., Avanzini, M. Buizza, Capelli, S., Capitani, M., Carturan, S., Catanesi, M. G., Cecchini, S., Charitonidis, N., Cindolo, F., Cogan, J., Cogo, G., Collazuol, G., D'Ago, D., Corso, F. Dal, De Rosa, G., Dolan, S., Falcone, A., Feltre, M., Gola, A., Guffanti, D., Halić, L., Iacob, F., Jebramcik, M. A., Jollet, C., Kallitsopoulou, A., Kliček, B., Lai, A., Lampoudis, C., Lanni, F., Laveder, M., Legou, P., Levorato, S., Longhin, A., Ludovici, L., Magaletti, L., Mandrioli, G., Margotti, A., Mascagna, V., Mattiazzi, M., Mauri, N., McElwee, J., Meazza, L., Meregaglia, A., Mezzetto, M., Munteanu, L., Paoloni, A., Pari, M., Papaevangelou, T., Parozzi, E. G., Pasqualini, L., Paternoster, G., Patrizii, L., Perrin-Terrin, M., Petit, L., Pozzato, M., Prest, M., Pupilli, F., Radicioni, E., Resnati, F., Ruggeri, A. C., Roueff, A., Saibene, G., Sampsonidis, D., Scanu, A., Scian, C., Sirri, G., Speziali, R., Stipčević, M., Tenti, M., Terranova, F., Torti, M., Tzamarias, S. E., Vallazza, E., Vallée, C., Votano, L.
Format: Preprint
Published: 2025
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author Acerbi, F.
Andreopoulos, C.
Angelis, I.
Roldan, A. Baratto
Bomben, L.
Bonesini, M.
Bramati, F.
Branca, A.
Brizzolari, C.
Brunetti, G.
Avanzini, M. Buizza
Capelli, S.
Capitani, M.
Carturan, S.
Catanesi, M. G.
Cecchini, S.
Charitonidis, N.
Cindolo, F.
Cogan, J.
Cogo, G.
Collazuol, G.
D'Ago, D.
Corso, F. Dal
De Rosa, G.
Dolan, S.
Falcone, A.
Feltre, M.
Gola, A.
Guffanti, D.
Halić, L.
Iacob, F.
Jebramcik, M. A.
Jollet, C.
Kallitsopoulou, A.
Kliček, B.
Lai, A.
Lampoudis, C.
Lanni, F.
Laveder, M.
Legou, P.
Levorato, S.
Longhin, A.
Ludovici, L.
Magaletti, L.
Mandrioli, G.
Margotti, A.
Mascagna, V.
Mattiazzi, M.
Mauri, N.
McElwee, J.
Meazza, L.
Meregaglia, A.
Mezzetto, M.
Munteanu, L.
Paoloni, A.
Pari, M.
Papaevangelou, T.
Parozzi, E. G.
Pasqualini, L.
Paternoster, G.
Patrizii, L.
Perrin-Terrin, M.
Petit, L.
Pozzato, M.
Prest, M.
Pupilli, F.
Radicioni, E.
Resnati, F.
Ruggeri, A. C.
Roueff, A.
Saibene, G.
Sampsonidis, D.
Scanu, A.
Scian, C.
Sirri, G.
Speziali, R.
Stipčević, M.
Tenti, M.
Terranova, F.
Torti, M.
Tzamarias, S. E.
Vallazza, E.
Vallée, C.
Votano, L.
author_facet Acerbi, F.
Andreopoulos, C.
Angelis, I.
Roldan, A. Baratto
Bomben, L.
Bonesini, M.
Bramati, F.
Branca, A.
Brizzolari, C.
Brunetti, G.
Avanzini, M. Buizza
Capelli, S.
Capitani, M.
Carturan, S.
Catanesi, M. G.
Cecchini, S.
Charitonidis, N.
Cindolo, F.
Cogan, J.
Cogo, G.
Collazuol, G.
D'Ago, D.
Corso, F. Dal
De Rosa, G.
Dolan, S.
Falcone, A.
Feltre, M.
Gola, A.
Guffanti, D.
Halić, L.
Iacob, F.
Jebramcik, M. A.
Jollet, C.
Kallitsopoulou, A.
Kliček, B.
Lai, A.
Lampoudis, C.
Lanni, F.
Laveder, M.
Legou, P.
Levorato, S.
Longhin, A.
Ludovici, L.
Magaletti, L.
Mandrioli, G.
Margotti, A.
Mascagna, V.
Mattiazzi, M.
Mauri, N.
McElwee, J.
Meazza, L.
Meregaglia, A.
Mezzetto, M.
Munteanu, L.
Paoloni, A.
Pari, M.
Papaevangelou, T.
Parozzi, E. G.
Pasqualini, L.
Paternoster, G.
Patrizii, L.
Perrin-Terrin, M.
Petit, L.
Pozzato, M.
Prest, M.
Pupilli, F.
Radicioni, E.
Resnati, F.
Ruggeri, A. C.
Roueff, A.
Saibene, G.
Sampsonidis, D.
Scanu, A.
Scian, C.
Sirri, G.
Speziali, R.
Stipčević, M.
Tenti, M.
Terranova, F.
Torti, M.
Tzamarias, S. E.
Vallazza, E.
Vallée, C.
Votano, L.
contents A new generation of neutrino cross-section experiments at the GeV scale is crucial in the precision era of oscillation physics and lepton flavor studies. In this document, we present a novel neutrino beam design that leverages the experience and R&D achievements of the NP06/ENUBET and NuTag Collaborations and explore its potential implementation at CERN. This beam enables flux monitoring at the percent level and provides a neutrino energy measurement independent of final state particle reconstruction at the neutrino detector. As a result, it eliminates the two primary sources of systematic uncertainty in cross-section measurements: flux normalization and energy bias caused by nuclear effects. We provide a detailed description of the beam technology and instrumentation, along with an overview of its physics potential, with particular emphasis on cross-sections relevant to DUNE and Hyper-Kamiokande.
format Preprint
id arxiv_https___arxiv_org_abs_2503_21589
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle nuSCOPE: A short-baseline neutrino beam at CERN for high-precision cross-section measurements
Acerbi, F.
Andreopoulos, C.
Angelis, I.
Roldan, A. Baratto
Bomben, L.
Bonesini, M.
Bramati, F.
Branca, A.
Brizzolari, C.
Brunetti, G.
Avanzini, M. Buizza
Capelli, S.
Capitani, M.
Carturan, S.
Catanesi, M. G.
Cecchini, S.
Charitonidis, N.
Cindolo, F.
Cogan, J.
Cogo, G.
Collazuol, G.
D'Ago, D.
Corso, F. Dal
De Rosa, G.
Dolan, S.
Falcone, A.
Feltre, M.
Gola, A.
Guffanti, D.
Halić, L.
Iacob, F.
Jebramcik, M. A.
Jollet, C.
Kallitsopoulou, A.
Kliček, B.
Lai, A.
Lampoudis, C.
Lanni, F.
Laveder, M.
Legou, P.
Levorato, S.
Longhin, A.
Ludovici, L.
Magaletti, L.
Mandrioli, G.
Margotti, A.
Mascagna, V.
Mattiazzi, M.
Mauri, N.
McElwee, J.
Meazza, L.
Meregaglia, A.
Mezzetto, M.
Munteanu, L.
Paoloni, A.
Pari, M.
Papaevangelou, T.
Parozzi, E. G.
Pasqualini, L.
Paternoster, G.
Patrizii, L.
Perrin-Terrin, M.
Petit, L.
Pozzato, M.
Prest, M.
Pupilli, F.
Radicioni, E.
Resnati, F.
Ruggeri, A. C.
Roueff, A.
Saibene, G.
Sampsonidis, D.
Scanu, A.
Scian, C.
Sirri, G.
Speziali, R.
Stipčević, M.
Tenti, M.
Terranova, F.
Torti, M.
Tzamarias, S. E.
Vallazza, E.
Vallée, C.
Votano, L.
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Accelerator Physics
Instrumentation and Detectors
A new generation of neutrino cross-section experiments at the GeV scale is crucial in the precision era of oscillation physics and lepton flavor studies. In this document, we present a novel neutrino beam design that leverages the experience and R&D achievements of the NP06/ENUBET and NuTag Collaborations and explore its potential implementation at CERN. This beam enables flux monitoring at the percent level and provides a neutrino energy measurement independent of final state particle reconstruction at the neutrino detector. As a result, it eliminates the two primary sources of systematic uncertainty in cross-section measurements: flux normalization and energy bias caused by nuclear effects. We provide a detailed description of the beam technology and instrumentation, along with an overview of its physics potential, with particular emphasis on cross-sections relevant to DUNE and Hyper-Kamiokande.
title nuSCOPE: A short-baseline neutrino beam at CERN for high-precision cross-section measurements
topic High Energy Physics - Experiment
High Energy Physics - Phenomenology
Accelerator Physics
Instrumentation and Detectors
url https://arxiv.org/abs/2503.21589