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 + π 0 ν e in the decay tunnel to monitor the associated production of ν e . This method provides the ν e 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).

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

BALLERINI, GIOVANNI;Mascagna, V.;Prest, M.;Soldani, M.;
2017-01-01

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 + π 0 ν e in the decay tunnel to monitor the associated production of ν e . This method provides the ν e 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).
2017
2017
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2017 European Physical Society Conference on High Energy Physics, EPS-HEP 2017
Palazzo del Cinema and Palazzo del CasinoVenice; Italy
5 July 2017 through 12 July 2017
https://pos.sissa.it/314/138
Inglese
Multidisciplinary
Atti di Convegno::Relazione (in Rivista)
Terranova, F.; Ballerini, Giovanni; Berra, A.; Boanta, R.; Bonesini, M.; Brizzolari, C.; Calviani, M.; Catanesi, M. G.; Cecchini, S.; Cindolo, F.; Cof...espandi
none
info:eu-repo/semantics/conferenceObject
273
48
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/2077933
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