A high intensity source of a single neutrino flavour with known spectrum is most desirable for precision measurements, the consensus direction for the future. The beta beam is an especially suitable option for this. We discuss the prospects of a very long baseline beta beam experiment with a magnetized iron calorimeter detector. In particular, with the source at CERN and the detector at the proposed India-based Neutrino Observatory (INO) the baseline is near the 'magic' value where the effect of the CP phase is small. We observe that this experiment will be well suited to determine the sign m⅔−m2/2 of and will be capable of probing θ13 down to about 1°
Abstract. We give the present status of the beta-beam study, which aims at producing intense ν e and...
High density magnetized detectors are well suited to exploit the outstanding purity and intensities ...
We underscore the physics advantage of an experiment where neutrinos produced in a beta-beam facilit...
AbstractA high intensity source of a single neutrino flavour with known spectrum is most desirable f...
We expound in detail the physics reaches of an experimental set-up in which the proposed large magne...
AbstractWe expound in detail the physics reaches of an experimental set-up in which the proposed lar...
We underscore the physics advantage of an experiment where neutrinos produced in a beta-beam facilit...
Beta Beams are designed to produce pure (anti)electron neutrino beams and could be an elegant and po...
We examine the reach of a Beta-beam experiment with two detectors at carefully chosen baselines for ...
The primary goal of the future experimental program in neutrino oscillation physics is to determine ...
We have studied the physics reach of an experiment where neutrinos produced in a beta-beam facility ...
The next generation of long baseline neutrino experiments will aim at determining the value of the u...
The Beta Beam CERN design is based on the present LHC injection complex and its physics reach is mai...
AbstractThe evolution of neutrino physics demands new schemes to produce intense, collimated and pur...
The goal for future neutrino facilities is the determination of the $[U_{e3}]$ mixing and CP violati...
Abstract. We give the present status of the beta-beam study, which aims at producing intense ν e and...
High density magnetized detectors are well suited to exploit the outstanding purity and intensities ...
We underscore the physics advantage of an experiment where neutrinos produced in a beta-beam facilit...
AbstractA high intensity source of a single neutrino flavour with known spectrum is most desirable f...
We expound in detail the physics reaches of an experimental set-up in which the proposed large magne...
AbstractWe expound in detail the physics reaches of an experimental set-up in which the proposed lar...
We underscore the physics advantage of an experiment where neutrinos produced in a beta-beam facilit...
Beta Beams are designed to produce pure (anti)electron neutrino beams and could be an elegant and po...
We examine the reach of a Beta-beam experiment with two detectors at carefully chosen baselines for ...
The primary goal of the future experimental program in neutrino oscillation physics is to determine ...
We have studied the physics reach of an experiment where neutrinos produced in a beta-beam facility ...
The next generation of long baseline neutrino experiments will aim at determining the value of the u...
The Beta Beam CERN design is based on the present LHC injection complex and its physics reach is mai...
AbstractThe evolution of neutrino physics demands new schemes to produce intense, collimated and pur...
The goal for future neutrino facilities is the determination of the $[U_{e3}]$ mixing and CP violati...
Abstract. We give the present status of the beta-beam study, which aims at producing intense ν e and...
High density magnetized detectors are well suited to exploit the outstanding purity and intensities ...
We underscore the physics advantage of an experiment where neutrinos produced in a beta-beam facilit...