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Main Authors: Jang, Seonghyeok, Jeon, Eunju, Won, Eunil, Ko, Young Ju, Lee, Kyungmin
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2401.13215
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author Jang, Seonghyeok
Jeon, Eunju
Won, Eunil
Ko, Young Ju
Lee, Kyungmin
author_facet Jang, Seonghyeok
Jeon, Eunju
Won, Eunil
Ko, Young Ju
Lee, Kyungmin
contents The behavior of neutrinos is the only phenomenon that cannot be explained by the standard model of particle physics. Because of these mysterious neutrino interactions observed in nature, at present, there is growing interest in this field and ongoing or planned neutrino experiments are seeking solutions to this mystery very actively. The design of neutrino experiments and the analysis of neutrino data rely on precise computations of neutrino oscillations and scattering processes in general. Motivated by this, we developed a software package that calculates neutrino production and oscillation in nuclear reactors, neutrino-electron scattering of solar neutrinos, and the oscillation of neutrinos from radioactive isotopes for the search of sterile neutrinos. This software package is validated by reproducing the result of calculations and observations in other publications. We also demonstrate the feasibility of this package by calculating the sensitivity of a liquid scintillator detector, currently in planning, to the sterile neutrinos. This work is expected to be used in designs of future neutrino experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13215
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle νOscillation: a software package for computation and simulation of neutrino propagation and interaction
Jang, Seonghyeok
Jeon, Eunju
Won, Eunil
Ko, Young Ju
Lee, Kyungmin
High Energy Physics - Experiment
The behavior of neutrinos is the only phenomenon that cannot be explained by the standard model of particle physics. Because of these mysterious neutrino interactions observed in nature, at present, there is growing interest in this field and ongoing or planned neutrino experiments are seeking solutions to this mystery very actively. The design of neutrino experiments and the analysis of neutrino data rely on precise computations of neutrino oscillations and scattering processes in general. Motivated by this, we developed a software package that calculates neutrino production and oscillation in nuclear reactors, neutrino-electron scattering of solar neutrinos, and the oscillation of neutrinos from radioactive isotopes for the search of sterile neutrinos. This software package is validated by reproducing the result of calculations and observations in other publications. We also demonstrate the feasibility of this package by calculating the sensitivity of a liquid scintillator detector, currently in planning, to the sterile neutrinos. This work is expected to be used in designs of future neutrino experiments.
title νOscillation: a software package for computation and simulation of neutrino propagation and interaction
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2401.13215