The value of the neutrino mixing angle θ13 privileges the second oscillation maximum for the discovery of CP violation instead of the first one. Going to the second oscillation maximum necessitates very intense neutrino beams with the appropriate energy. The most intense neutron source, the ESS, will have a 2GeV proton linac with the unprecedented power of 5MW. This linac also can produce the most intense neutrino beam with very high potential to discover and measure a neutrino CP violation. The physics performance of that neutrino beam combined with a megaton Water Cherenkov detector installed at a distance of 500km from ESS has been evaluated. In addition, the choice of such detector will extent the physics program to proton–decay, atmosp...
AbstractIn addition to the world's most intense pulsed spallation neutron source, the European Spall...
International audienceThe European Spallation Source linear proton accelerator will have a uniquely ...
International audienceA new project for the production of a very intense neutrino beam has arisen to...
The value of the neutrino mixing angle θ13 privileges the second oscillation maximum for the discove...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
The relatively high value of θ13 privileges the 2nd oscillation max. for the discovery of CP violati...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
International audienceThe measured relatively high value of $\theta_{13}$ in 2012 privileges the 2nd...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
International audienceThe relatively large value of the neutrino mixing angle $\theta_{13}$ measured...
AbstractAfter measuring the last neutrino mixing angle θ13 and finding it relatively large, the obse...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
This conceptual design report provides a detailed account of the European Spallation Source neutrino...
International audienceIn addition to the world's most intense pulsed spallation neutron source, the ...
International audienceThe discovery of oscillations and the latest progress in neutrino physics will...
AbstractIn addition to the world's most intense pulsed spallation neutron source, the European Spall...
International audienceThe European Spallation Source linear proton accelerator will have a uniquely ...
International audienceA new project for the production of a very intense neutrino beam has arisen to...
The value of the neutrino mixing angle θ13 privileges the second oscillation maximum for the discove...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
The relatively high value of θ13 privileges the 2nd oscillation max. for the discovery of CP violati...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
International audienceThe measured relatively high value of $\theta_{13}$ in 2012 privileges the 2nd...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
International audienceThe relatively large value of the neutrino mixing angle $\theta_{13}$ measured...
AbstractAfter measuring the last neutrino mixing angle θ13 and finding it relatively large, the obse...
International audienceAfter measuring in 2012 a relatively large value of the neutrino mixing angle ...
This conceptual design report provides a detailed account of the European Spallation Source neutrino...
International audienceIn addition to the world's most intense pulsed spallation neutron source, the ...
International audienceThe discovery of oscillations and the latest progress in neutrino physics will...
AbstractIn addition to the world's most intense pulsed spallation neutron source, the European Spall...
International audienceThe European Spallation Source linear proton accelerator will have a uniquely ...
International audienceA new project for the production of a very intense neutrino beam has arisen to...