Potential measurement of the weak mixing angle with neutrino-electron scattering at low energy
arXiv:1005.1254 · doi:10.1007/JHEP08(2011)059
Abstract
We study the possibility to measure sin^2 theta_W by neutrino-electron scattering at a value of the momentum transfer Q ~ 30 MeV with a precision of 0.24% which is only a factor three below the one obtained by LEP-I at the Z-pole. The neutrino source is a proton beam dump providing a clean beam from muon decay at rest and the detector is a 100 kt scale water Cerenkov detector, which results in about 20 million signal events.
5 pages, 5 eps figures, 3 tables. Title changed. Detailed discussion on the proposed set-up and the dependence of the expected precision on the energy resolution and the exposure added. Conclusions unchanged. To appear in JHEP
References in corpus (3)
Cited by in corpus (5)
- Low Energy Measurements of the Weak Mixing Angle
- Measuring the Weak Mixing Angle in the DUNE Near Detector Complex
- Constraining Non-Standard Interactions of the Neutrino with Borexino
- estimate and bounds on nonstandard interactions at source and detector in the solar neutrino low-energy regime
- Low-energy neutrino-electron scattering as a Standard Model probe: the potential of LENA as case study