Fine-tuning final state interactions model in NuWro Monte Carlo event generator

Fuente: arXiv
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Hauptverfasser: Prasad, Hemant, Sobczyk, Jan T., Banerjee, Rwik Dharmapal, Bonilla, J. Luis, Graczyk, Krzysztof M., Kowal, Beata E., Ankowski, Artur M.
Format: Preprint
Veröffentlicht: 2025
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author Prasad, Hemant
Sobczyk, Jan T.
Banerjee, Rwik Dharmapal
Bonilla, J. Luis
Graczyk, Krzysztof M.
Kowal, Beata E.
Ankowski, Artur M.
author_facet Prasad, Hemant
Sobczyk, Jan T.
Banerjee, Rwik Dharmapal
Bonilla, J. Luis
Graczyk, Krzysztof M.
Kowal, Beata E.
Ankowski, Artur M.
contents Recent experimental data from MINERvA on transverse kinematics observables across four different nuclear targets - carbon, oxygen, iron, and lead - have been utilized to refine the modeling of final state interaction effects in the NuWro Monte Carlo neutrino event generator. For this purpose, we have developed an event reweighting tool for future applications to adjust the strength of final-state interactions. This study highlights the requirement for stronger nucleon reinteractions than previously assumed, but it still falls within the uncertainty range observed in a study comparing proton transparency measurements. This conclusion has significant implications for both experimental and theoretical work involving NuWro.
format Preprint
id arxiv_https___arxiv_org_abs_2512_23350
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fine-tuning final state interactions model in NuWro Monte Carlo event generator
Prasad, Hemant
Sobczyk, Jan T.
Banerjee, Rwik Dharmapal
Bonilla, J. Luis
Graczyk, Krzysztof M.
Kowal, Beata E.
Ankowski, Artur M.
High Energy Physics - Phenomenology
Nuclear Theory
Recent experimental data from MINERvA on transverse kinematics observables across four different nuclear targets - carbon, oxygen, iron, and lead - have been utilized to refine the modeling of final state interaction effects in the NuWro Monte Carlo neutrino event generator. For this purpose, we have developed an event reweighting tool for future applications to adjust the strength of final-state interactions. This study highlights the requirement for stronger nucleon reinteractions than previously assumed, but it still falls within the uncertainty range observed in a study comparing proton transparency measurements. This conclusion has significant implications for both experimental and theoretical work involving NuWro.
title Fine-tuning final state interactions model in NuWro Monte Carlo event generator
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2512.23350