Antineutrino Science in KamLAND
Abstract
The primary goal of KamLAND is a search for the oscillation of s emitted from distant power reactors. The long baseline, typically 180 km, enables KamLAND to address the oscillation solution of the solar neutrino problem with under laboratory conditions. KamLAND found fewer reactor events than expected from standard assumptions about s propagation at more than 9 {\sigma} confidence level (C.L.). The observed energy spectrum disagrees with the expected spectral shape at more than 5 {\sigma} C.L., and prefers the distortion from neutrino oscillation effects. A three-flavor oscillation analysis of the data from KamLAND and KamLAND + solar neutrino experiments with CPT invariance, yields , , and . All solutions to the solar neutrino problem except for the large mixing angle (LMA) region are excluded. KamLAND also demonstrated almost two cycles of the periodic feature expected from neutrino oscillation effects. KamLAND performed the first experimental study of antineutrinos from the Earths interior so-called geoneutrinos (geo s), and succeeded in detecting geo s produced by the decays of U and Th within the Earth. Assuming a chondritic Th/U mass ratio, we obtain events from U and Th, corresponding a geo flux of at the KamLAND location. We evaluate various bulk silicate Earth composition models using the observed geoneutrino rate.
Cite
@article{arxiv.1409.4515,
title = {Antineutrino Science in KamLAND},
author = {Atsuto Suzuki},
journal= {arXiv preprint arXiv:1409.4515},
year = {2015}
}