English

Scanning the Earth with solar neutrinos and DUNE

High Energy Physics - Phenomenology 2017-08-16 v2

Abstract

We explore oscillations of the solar 8^8B neutrinos in the Earth in detail. The relative excess of night νe\nu_e events (the Night-Day asymmetry) is computed as function of the neutrino energy and the nadir angle η\eta of its trajectory. The finite energy resolution of the detector causes an important attenuation effect, while the layer-like structure of the Earth density leads to an interesting parametric suppression of the oscillations. Different features of the η\eta- dependence encode information about the structure (such as density jumps) of the Earth density profile; thus measuring the η\eta distribution allows the scanning of the interior of the Earth. We estimate the sensitivity of the DUNE experiment to such measurements. About 75 neutrino events are expected per day in 40 kt. For high values of Δm212\Delta m^2_{21} and Eν>E_\nu > 11 MeV, the corresponding D-N asymmetry is about 4\% and can be measured with 15%15\% accuracy after 5 years of data taking. The difference of the D-N asymmetry between high and low values of Δm212\Delta m^2_{21} can be measured at the 4σ4\sigma level. The relative excess of the νe\nu_e signal varies with the nadir angle up to 50\%. DUNE may establish the existence of the dip in the η\eta- distribution at the (23)σ(2 - 3) \sigma level.

Keywords

Cite

@article{arxiv.1702.06097,
  title  = {Scanning the Earth with solar neutrinos and DUNE},
  author = {Ara Ioannisian and Alexei Yu. Smirnov and Daniel Wyler},
  journal= {arXiv preprint arXiv:1702.06097},
  year   = {2017}
}

Comments

The formalism of neutrino oscillations in the Earth is further elaborated, Fig. 5 substituted, references added, typos corrected