TY - JOUR
T1 - Spectral shape analysis for electron antineutrino oscillation study by using 8Li generator with 252Cf source
AU - Shin, Jae Won
AU - Cheoun, Myung Ki
AU - Kajino, Toshitaka
AU - Hayakawa, Takehito
N1 - Publisher Copyright:
© 2018 IOP Publishing Ltd and Sissa Medialab.
PY - 2018/9/17
Y1 - 2018/9/17
N2 - Existence of hypothetical fourth neutrino, so-called sterile neutrino, is one of open issues in the particle and neutrino physics. This fourth neutrino is a candidate for explaining some anomalies reported in LSND, MiniBoone, reactor experiments, and gallium experiments. To search for the existence of the sterile neutrino, we report detailed analysis of a feasible experiment for short baseline electron antineutrino (e) disappearance study, in which a e source from 8Li generator is considered under non-accelerator system. For 8Li production, we suggest to use 252Cf source as an intense neutron emitter, by which one can produce 8Li isotope through 7Li(n,γ)8Li reaction, effectively. Using the 8Li generator, one does not need any accelerator or reactor facilities because the generator can be placed on any present and/or planned neutrino detectors as closely as possible. For the effect of the possible sterile neutrinos, we estimate expected neutrino flux and event rates from the neutrino source scheme, and show neutrino disappearance features and possible reaction rate changes by the sterile neutrino using the spectral shape analysis.
AB - Existence of hypothetical fourth neutrino, so-called sterile neutrino, is one of open issues in the particle and neutrino physics. This fourth neutrino is a candidate for explaining some anomalies reported in LSND, MiniBoone, reactor experiments, and gallium experiments. To search for the existence of the sterile neutrino, we report detailed analysis of a feasible experiment for short baseline electron antineutrino (e) disappearance study, in which a e source from 8Li generator is considered under non-accelerator system. For 8Li production, we suggest to use 252Cf source as an intense neutron emitter, by which one can produce 8Li isotope through 7Li(n,γ)8Li reaction, effectively. Using the 8Li generator, one does not need any accelerator or reactor facilities because the generator can be placed on any present and/or planned neutrino detectors as closely as possible. For the effect of the possible sterile neutrinos, we estimate expected neutrino flux and event rates from the neutrino source scheme, and show neutrino disappearance features and possible reaction rate changes by the sterile neutrino using the spectral shape analysis.
KW - neutrino experiments
KW - neutrino properties
KW - neutrino theory
UR - https://www.scopus.com/pages/publications/85054505822
U2 - 10.1088/1475-7516/2018/09/024
DO - 10.1088/1475-7516/2018/09/024
M3 - 文章
AN - SCOPUS:85054505822
SN - 1475-7516
VL - 2018
JO - Journal of Cosmology and Astroparticle Physics
JF - Journal of Cosmology and Astroparticle Physics
IS - 9
M1 - 024
ER -