The ENUBET Collaboration is designing the first ``monitored neutrino beam'': a beam with an unprecedented control of the flux, energy and flavor of neutrinos at source. In particular, ENUBET monitors the $\nu_e$ production mostly by the detection of large angle positrons from three body semileptonic decays of kaons: $K^+ \rightarrow e^+ \pi^0 \nu_e$. In this paper, we present the status of the Project and the 2018-2019 advances on proton extraction, transfer line, particle identification in the decay tunnel and beam performance
The ENUBET project is studying a narrow band neutrino beam where lepton production can be monitored ...
ENUBET has been designed to monitor lepton production in the decay tunnel of neutrino beams at singl...
The ENUBET experiment is developing a new narrow-band neutrino beam in which the flux and the flavor...
The ENUBET Collaboration is designing the first ``monitored neutrino beam'': a beam with an unpreced...
International audienceThe CERN NP06/ENUBET experiment is designing the first ``monitored neutrino be...
The ENUBET project is studying a narrow band neutrino beam where lepton production can be monitored ...
ENUBET has been designed to monitor lepton production in the decay tunnel of neutrino beams at singl...
The ENUBET experiment is developing a new narrow-band neutrino beam in which the flux and the flavor...
The ENUBET Collaboration is designing the first ``monitored neutrino beam'': a beam with an unpreced...
International audienceThe CERN NP06/ENUBET experiment is designing the first ``monitored neutrino be...
The ENUBET project is studying a narrow band neutrino beam where lepton production can be monitored ...
ENUBET has been designed to monitor lepton production in the decay tunnel of neutrino beams at singl...
The ENUBET experiment is developing a new narrow-band neutrino beam in which the flux and the flavor...