arXiv · 1508.01650
Experimental Conditions for Determination of the Neutrino Mass Hierarchy with Reactor Antineutrinos
Abstract
This article reports the optimized experimental requirements to determine neutrino mass hierarchy using electron antineutrinos ($\barν_e$) generated in a nuclear reactor. The features of the neutrino mass hierarchy can be extracted from the $|Δm^{2}_{31}|$ and $|Δm^{2}_{32}|$ oscillations by applying the Fourier sine and cosine transform to the $L/E$ spectrum. To determine the neutrino mass hierarchy above 90\% probability, the requirements on the energy resolution as a function of the baseline are studied at $\sin 2θ_{13}=0.1$. If the energy resolution of the neutrino detector is less than $0.04/ \sqrt{E_ν}$ and the determination probability obtained from Bayes' theorem is above 90\%, the detector needs to be located around 48--53 km from the reactor(s) to measure the energy spectrum of $\barν_e$. These results will be helpful for setting up an experiment to determine the neutrino mass hierarchy, which is an important problem in neutrino physics.
Explore related subjects
Keep this discovery
M. Y. Pac. 2015-12-09. Experimental Conditions for Determination of the Neutrino Mass Hierarchy with Reactor Antineutrinos. https://doi.org/10.1016/j.nuclphysb.2015.11.009
Cite the original work for its findings. Save a collection to share your selection of sources.