Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data

Abstract The standard model coherent elastic neutrino-nucleus scattering (CEνNS) cross section is subject to nuclear form factor uncertainties, mainly driven by the root-mean-square radius of the neutron density distribution. Motivated by COHERENT phases I-III and future multi-ton direct detection d...

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Main Authors: D. Aristizabal Sierra, Jiajun Liao, D. Marfatia
Format: Article
Language:English
Published: SpringerOpen 2019-06-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP06(2019)141
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spelling doaj-0c430c8d544b43c0a8b78b6e6d3d7a282020-11-25T03:46:46ZengSpringerOpenJournal of High Energy Physics1029-84792019-06-012019612310.1007/JHEP06(2019)141Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering dataD. Aristizabal Sierra0Jiajun Liao1D. Marfatia2Departamento de Física, Universidad Técnica Federico Santa MaríaSchool of Physics, Sun Yat-Sen UniversityDepartment of Physics and Astronomy, University of Hawaii at ManoaAbstract The standard model coherent elastic neutrino-nucleus scattering (CEνNS) cross section is subject to nuclear form factor uncertainties, mainly driven by the root-mean-square radius of the neutron density distribution. Motivated by COHERENT phases I-III and future multi-ton direct detection dark matter searches, we evaluate these uncertainties in cesium iodide, germanium, xenon and argon detectors. We find that the uncertainties become relevant for momentum transfers q ≳ 20 MeV and are essentially independent of the form factor parameterization. Consequently, form factor uncertainties are not important for CEνNS induced by reactor or solar neutrinos. Taking into account these uncertainties, we then evaluate their impact on measurements of CEνNS at COHERENT, the diffuse supernova background (DSNB) neutrinos and sub-GeV atmospheric neutrinos. We also calculate the relative uncertainties in the number of COHERENT events for different nuclei as a function of recoil energy. For DSNB and atmospheric neutrinos, event rates at a liquid argon detector can be uncertain to more than 5%. Finally, we consider the impact of form factor uncertainties on searches for nonstandard neutrino interactions, sterile neutrinos and neutrino generalized interactions. We point out that studies of new physics using CEνNS data are affected by neutron form factor uncertainties, which if not properly taken into account may lead to the misidentification of new physics signals. The uncertainties quantified here are also relevant for dark matter direct detection searches.http://link.springer.com/article/10.1007/JHEP06(2019)141Beyond Standard ModelNeutrino PhysicsSolar and Atmospheric Neutrinos
collection DOAJ
language English
format Article
sources DOAJ
author D. Aristizabal Sierra
Jiajun Liao
D. Marfatia
spellingShingle D. Aristizabal Sierra
Jiajun Liao
D. Marfatia
Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
Journal of High Energy Physics
Beyond Standard Model
Neutrino Physics
Solar and Atmospheric Neutrinos
author_facet D. Aristizabal Sierra
Jiajun Liao
D. Marfatia
author_sort D. Aristizabal Sierra
title Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
title_short Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
title_full Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
title_fullStr Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
title_full_unstemmed Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
title_sort impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2019-06-01
description Abstract The standard model coherent elastic neutrino-nucleus scattering (CEνNS) cross section is subject to nuclear form factor uncertainties, mainly driven by the root-mean-square radius of the neutron density distribution. Motivated by COHERENT phases I-III and future multi-ton direct detection dark matter searches, we evaluate these uncertainties in cesium iodide, germanium, xenon and argon detectors. We find that the uncertainties become relevant for momentum transfers q ≳ 20 MeV and are essentially independent of the form factor parameterization. Consequently, form factor uncertainties are not important for CEνNS induced by reactor or solar neutrinos. Taking into account these uncertainties, we then evaluate their impact on measurements of CEνNS at COHERENT, the diffuse supernova background (DSNB) neutrinos and sub-GeV atmospheric neutrinos. We also calculate the relative uncertainties in the number of COHERENT events for different nuclei as a function of recoil energy. For DSNB and atmospheric neutrinos, event rates at a liquid argon detector can be uncertain to more than 5%. Finally, we consider the impact of form factor uncertainties on searches for nonstandard neutrino interactions, sterile neutrinos and neutrino generalized interactions. We point out that studies of new physics using CEνNS data are affected by neutron form factor uncertainties, which if not properly taken into account may lead to the misidentification of new physics signals. The uncertainties quantified here are also relevant for dark matter direct detection searches.
topic Beyond Standard Model
Neutrino Physics
Solar and Atmospheric Neutrinos
url http://link.springer.com/article/10.1007/JHEP06(2019)141
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