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Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements

The exact way of treating flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements can lead to subtle issues when comparing the results to model predictions. There is a difference between reporting a cross section in the (unknown) real flux, and reporting a cross secti...

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Detalles Bibliográficos
Autores principales: Koch, Lukas, Dolan, Stephen
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.102.113012
http://cds.cern.ch/record/2730821
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author Koch, Lukas
Dolan, Stephen
author_facet Koch, Lukas
Dolan, Stephen
author_sort Koch, Lukas
collection CERN
description The exact way of treating flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements can lead to subtle issues when comparing the results to model predictions. There is a difference between reporting a cross section in the (unknown) real flux, and reporting a cross section that was extrapolated from the (unknown) real flux to a fixed reference flux. A lot of (most?) current analyses do the former, while the results are compared to model predictions as if they were the latter. This leads to (part of) the flux shape uncertainty being ignored, potentially leading to wrong physics conclusions. The size of the effect is estimated to be sub-dominant, but non-negligible in two example measurements from T2K and MINERvA. This paper describes how the issue arises and provides instructions for possible ways how to treat the flux shape uncertainties correctly.
id cern-2730821
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27308212023-03-14T16:50:31Zdoi:10.1103/PhysRevD.102.113012http://cds.cern.ch/record/2730821engKoch, LukasDolan, StephenTreatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurementshep-exParticle Physics - ExperimentThe exact way of treating flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements can lead to subtle issues when comparing the results to model predictions. There is a difference between reporting a cross section in the (unknown) real flux, and reporting a cross section that was extrapolated from the (unknown) real flux to a fixed reference flux. A lot of (most?) current analyses do the former, while the results are compared to model predictions as if they were the latter. This leads to (part of) the flux shape uncertainty being ignored, potentially leading to wrong physics conclusions. The size of the effect is estimated to be sub-dominant, but non-negligible in two example measurements from T2K and MINERvA. This paper describes how the issue arises and provides instructions for possible ways how to treat the flux shape uncertainties correctly.arXiv:2009.00552oai:cds.cern.ch:27308212020-09-01
spellingShingle hep-ex
Particle Physics - Experiment
Koch, Lukas
Dolan, Stephen
Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title_full Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title_fullStr Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title_full_unstemmed Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title_short Treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
title_sort treatment of flux shape uncertainties in unfolded, flux-averaged neutrino cross-section measurements
topic hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevD.102.113012
http://cds.cern.ch/record/2730821
work_keys_str_mv AT kochlukas treatmentoffluxshapeuncertaintiesinunfoldedfluxaveragedneutrinocrosssectionmeasurements
AT dolanstephen treatmentoffluxshapeuncertaintiesinunfoldedfluxaveragedneutrinocrosssectionmeasurements