Status of the ENUBET project
Langue
en
Communication dans un congrès
Ce document a été publié dans
J.Phys.Conf.Ser., J.Phys.Conf.Ser., 2017-10-15, Catania. 2018, vol. 1056, n° 1, p. 012047
Résumé en anglais
The next generation of neutrino experiments requires measurements of absolute neutrino cross sections at the GeV scale with high precision (∼1%) presently limited by the uncertainties on neutrino flux. Monitoring the lepton ...Lire la suite >
The next generation of neutrino experiments requires measurements of absolute neutrino cross sections at the GeV scale with high precision (∼1%) presently limited by the uncertainties on neutrino flux. Monitoring the lepton production in the decay tunnel of neutrino beams is the most straightforward way to measure the neutrino flux at source. The ENUBET Collaboration develops novel technologies to monitor positrons from K + → νee +π0 decays on an event by event basis. This technique can achieve a precision in the νe flux below 1% and enable a new generation of cross section and short baseline experiments. In this paper, we present the achievements of the first year of the Project on beamline simulation, rate and dose assessment, detector prototyping and evaluation of the physics reach.< Réduire
Mots clés en anglais
activity report
neutrino: flux
neutrino: beam
lepton: production
positron
monitoring
beam transport
measurement methods
detector: design
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