Solar Model Independent Constraints on the Sterile Neutrino Interpretation of the Gallium Anomaly

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Main Authors: Gonzalez-Garcia, M. C., Maltoni, Michele, Pinheiro, João Paulo
Format: Preprint
Published: 2024
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author Gonzalez-Garcia, M. C.
Maltoni, Michele
Pinheiro, João Paulo
author_facet Gonzalez-Garcia, M. C.
Maltoni, Michele
Pinheiro, João Paulo
contents We perform a global analysis of most up-to-date solar neutrino data and KamLAND reactor antineutrino data in the framework of the 3+1 sterile neutrino mixing scenario (invoked to explain the results of the Gallium source experiments) with the aim of quantifying the dependence of the (in)compatibility of the required mixing with assumptions on the initial fluxes. The analysis of solar data is performed in two alternative ways: using the flux predicted by the latest standard solar models, and in a model independent approach where the solar fluxes are also determined by the fit. The dependence on the normalization of the capture rate in the solar Gallium experiments is also quantified. Similarly, in the KamLAND analysis we consider both the case where the reactor flux normalization is assumed to be known a priori, as well as a normalization free case which relies solely on available neutrino data. Using a parameter goodness of fit test, we find that in most cases the compatibility between Gallium and solar+KamLAND data only occur at the $3σ$ level or higher. We also discuss the implications of enforcing better compatibility by tweaking the mechanism for the energy production in the Sun.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16840
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Solar Model Independent Constraints on the Sterile Neutrino Interpretation of the Gallium Anomaly
Gonzalez-Garcia, M. C.
Maltoni, Michele
Pinheiro, João Paulo
High Energy Physics - Phenomenology
High Energy Physics - Experiment
We perform a global analysis of most up-to-date solar neutrino data and KamLAND reactor antineutrino data in the framework of the 3+1 sterile neutrino mixing scenario (invoked to explain the results of the Gallium source experiments) with the aim of quantifying the dependence of the (in)compatibility of the required mixing with assumptions on the initial fluxes. The analysis of solar data is performed in two alternative ways: using the flux predicted by the latest standard solar models, and in a model independent approach where the solar fluxes are also determined by the fit. The dependence on the normalization of the capture rate in the solar Gallium experiments is also quantified. Similarly, in the KamLAND analysis we consider both the case where the reactor flux normalization is assumed to be known a priori, as well as a normalization free case which relies solely on available neutrino data. Using a parameter goodness of fit test, we find that in most cases the compatibility between Gallium and solar+KamLAND data only occur at the $3σ$ level or higher. We also discuss the implications of enforcing better compatibility by tweaking the mechanism for the energy production in the Sun.
title Solar Model Independent Constraints on the Sterile Neutrino Interpretation of the Gallium Anomaly
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2411.16840