The knowledge of initial flux, energy and flavour of current neutrino beams is currently the main limitation for a precise measurement of neutrino crosssections. The ENUBET ERC project (2016–2021) is studying a facility based on a narrow-band neutrino beam capable of constraining the neutrino flux normalization through the monitoring of the associated charged leptons in an instrumented decay tunnel. In particular, the identification of large-angle positrons from Ke3 decays at single-particle level can reduce the νe flux uncertainty at the level of 1%. This setup would allow for an unprecedented measurement of the νe cross-section at the GeV scale. Such an experimental input would be highly beneficial to reduce the budget of systematic uncer...
The challenges of precision neutrino physics require measurements of absolute neutrino cross sec- ti...
The challenges of precision neutrino physics require measurements of absolute neutrino cross section...
Neutrino fluxes are currently affected by large normalization uncertainties (5-10%). Neutrino physic...
The knowledge of initial flux, energy and flavour of current neutrino beams is currently the main li...
The knowledge of the initial flux, energy and flavor of current neutrino beams is the main limitatio...
The knowledge of the initial flux in conventional neutrino beams represents the main limitation for ...
The knowledge of initial flux, energy and flavor of neutrino beams is currently the main limitation ...
The knowledge of initial flux, energy and flavor of neutrino beams is currently the main limitation ...
The challenges of precision neutrino physics require measurements of absolute neutrino cross sec- ti...
The challenges of precision neutrino physics require measurements of absolute neutrino cross section...
Neutrino fluxes are currently affected by large normalization uncertainties (5-10%). Neutrino physic...
The knowledge of initial flux, energy and flavour of current neutrino beams is currently the main li...
The knowledge of the initial flux, energy and flavor of current neutrino beams is the main limitatio...
The knowledge of the initial flux in conventional neutrino beams represents the main limitation for ...
The knowledge of initial flux, energy and flavor of neutrino beams is currently the main limitation ...
The knowledge of initial flux, energy and flavor of neutrino beams is currently the main limitation ...
The challenges of precision neutrino physics require measurements of absolute neutrino cross sec- ti...
The challenges of precision neutrino physics require measurements of absolute neutrino cross section...
Neutrino fluxes are currently affected by large normalization uncertainties (5-10%). Neutrino physic...