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The enubet project: High precision neutrino flux measurements in conventional neutrino beams

  • F. Terranova
  • , G. Ballerini
  • , A. Berra
  • , R. Boanta
  • , M. Bonesini
  • , C. Brizzolari
  • , M. Calviani
  • , M. G. Catanesi
  • , S. Cecchini
  • , F. Cindolo
  • , A. Coffani
  • , G. Collazuol
  • , E. Conti
  • , F. Dal Corso
  • , G. De Rosa
  • , A. Gola
  • , R. A. Intonti
  • , C. Jollet
  • , Y. Kudenko
  • , M. Laveder
  • A. Longhin, P. F. Loverre, L. Ludovici, L. Magaletti, G. Mandrioli, A. Margotti, V. Mascagna, N. Mauri, A. Meregaglia, M. Mezzetto, M. Nessi, A. Paoloni, M. Pari, G. Paternoster, L. Patrizii, C. Piemonte, M. Pozzato, M. Prest, F. Pupilli, E. Radicioni, C. Riccio, A. C. Ruggeri, M. Soldani, G. Sirri, M. Tenti, E. Vallazza, L. Votano, E. Wildner
  • University of Milan - Bicocca
  • University of Insubria
  • National Institute for Nuclear Physics
  • CERN
  • University of Padua
  • University of Naples Federico II
  • University of Trento
  • Université de Strasbourg
  • Université de Bordeaux
  • Institute for Nuclear Research of the Russian Academy of Sciences
  • University of Rome La Sapienza
  • University of Bologna

Research output: Contribution to journalConference articlepeer-review

Abstract

The ENUBET Collaboration is developing a technology to reduce by one order of magnitude the uncertainty on fluxes in conventional neutrino beam. The ENUBET beamline exploits the large angle production of positrons from K+ → e+π0νe in the decay tunnel to monitor the associated production of νe. This method provides the νe rate at source at the 1% level. In this talk, we will summarize the results during the first year of the project and plans up to completion (2021).

Original languageEnglish
JournalProceedings of Science
StatePublished - 2017
Event2017 European Physical Society Conference on High Energy Physics, EPS-HEP 2017 - Venice, Italy
Duration: Jul 5 2017Jul 12 2017

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