arXiv · hep-ph/0311324
Lifting degeneracies in the oscillation parameters by a neutrino factory
Abstract
We study the potential of a very long baseline neutrino oscillation experiment with a neutrino factory and a large segmented water-Cerenkov calorimeter detector in resolving the degeneracies in the neutrino oscillation parameters; the sign of the larger mass-squared difference $δm^2_{13}$, the sign of $|U_{μ3}|^2 (\equiv \sin^2θ_{ATM)-1/2$, and a possible two-fold ambiguity in the determination of the CP phase $δ_{MNS}$. We find that the above problems can be resolved even if the particle charges are not measured. The following results are obtained in our exploratory study for a neutrino factory which delivers $10^{21}$ decaying $μ^+$ and $μ^-$ at 10 GeV and a 100 kton detector which is placed 2,100 km away and is capable of measuring the event energy and distinguishing $e^\pm$ from $μ^\pm$, but not their charges. The sign of $δm^2_{13}$ can be determined for $4|U_{e3}|^2(1-|U_{e3}|^2)\equiv \sin^22θ_{RCT}\gsim 0.008$. That of $\sin^2θ_{ATM}-1/2$ can be resolved for $\sin^22θ_{ATM}=0.96$ when $\sin^22θ_{RCT}\gsim 0.06$. The CP-violating phase $δ_{MNS}$ can be uniquely constrained for $\sin^22θ_{RCT}\gsim 0.02$ if its true value is around $90^\circ$ or $270^\circ$, while it can be constrained for $\sin^22θ_{RCT}\gsim 0.03$ if its true value is around $0^\circ$ or $180^\circ$.
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Mayumi Aoki, Kaoru Hagiwara, Naotoshi Okamura. 2004-11-19. Lifting degeneracies in the oscillation parameters by a neutrino factory. https://doi.org/10.1016/j.physletb.2004.12.022
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