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).

Terranova, F., Ballerini, G., Berra, A., Boanta, R., Bonesini, M., Brizzolari, C., et al. (2017). The ENUBET project: High precision neutrino flux measurements in conventional neutrino beams. Intervento presentato a: 2017 European Physical Society Conference on High Energy Physics, EPS-HEP 2017, Palazzo del Cinema and Palazzo del Casino, Venezia, Italia.

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

Terranova F.;Bonesini M.;Brizzolari C.;Tenti M.;
2017

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).
slide + paper
neutrino beams
English
2017 European Physical Society Conference on High Energy Physics, EPS-HEP 2017
2017
2017
none
Terranova, F., Ballerini, G., Berra, A., Boanta, R., Bonesini, M., Brizzolari, C., et al. (2017). The ENUBET project: High precision neutrino flux measurements in conventional neutrino beams. Intervento presentato a: 2017 European Physical Society Conference on High Energy Physics, EPS-HEP 2017, Palazzo del Cinema and Palazzo del Casino, Venezia, Italia.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/286447
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