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Precision on leptonic mixing parameters at future neutrino oscillation experiments

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arxiv 1203.5651 v2 pith:NG3CDKBX submitted 2012-03-26 hep-ph

classification hep-ph
keywords neutrinodeltaerrorprecisionthetadifferentexperimentsbasis
verification ladder T0 review T1 audit T2 compute T3 formal
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We perform a comparison of the different future neutrino oscillation experiments based on the achievable precision in the determination of the fundamental parameters theta_{13} and the CP phase, delta, assuming that theta_{13} is in the range indicated by the recent Daya Bay measurement. We study the non-trivial dependence of the error on delta on its true value. When matter effects are small, the largest error is found at the points where CP violation is maximal, and the smallest at the CP conserving points. The situation is different when matter effects are sizable. As a result of this effect, the comparison of the physics reach of different experiments on the basis of the CP discovery potential, as usually done, can be misleading. We have compared various proposed super-beam, beta-beam and neutrino factory setups on the basis of the relative precision of theta_{13} and the error on delta. Neutrino factories, both high-energy or low-energy, outperform alternative beam technologies. An ultimate precision on theta_{13} below 3% and an error on delta of < 7^{\circ} at 1 sigma (1 d.o.f.) can be obtained at a neutrino factory.

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  1. Precision measurements on $\delta_\text{CP}$ in MOMENT

    hep-ph 2019-09 conditional novelty 4.0 of 10

    A simulation of the proposed MOMENT experiment estimates a 1 sigma precision of roughly 10 to 15 degrees on delta_CP, improving to about 12 degrees or better when MOMENT data are combined with DUNE and T2HK.

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