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GEANT4 Parameter Tuning Using Professor

The GEANT4 toolkit is used extensively in high energy physics to simulate the passage of particles through matter and to predict effects such as detector efficiencies and smearing. GEANT4 uses many underlying models to predict particle interaction kinematics, and uncertainty in these models leads to...

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Detalles Bibliográficos
Autores principales: Elvira, V., Fields, L., Genser, K.L., Hatcher, R., Ivanchenko, V., Kelsey, M., Koi, T., Perdue, G.N., Ribon, A., Uzhinsky, V., Wright, D.H., Yarba, J., Jun, S.Y.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/15/02/P02025
http://cds.cern.ch/record/2695230
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author Elvira, V.
Fields, L.
Genser, K.L.
Hatcher, R.
Ivanchenko, V.
Kelsey, M.
Koi, T.
Perdue, G.N.
Ribon, A.
Uzhinsky, V.
Wright, D.H.
Yarba, J.
Jun, S.Y.
author_facet Elvira, V.
Fields, L.
Genser, K.L.
Hatcher, R.
Ivanchenko, V.
Kelsey, M.
Koi, T.
Perdue, G.N.
Ribon, A.
Uzhinsky, V.
Wright, D.H.
Yarba, J.
Jun, S.Y.
author_sort Elvira, V.
collection CERN
description The GEANT4 toolkit is used extensively in high energy physics to simulate the passage of particles through matter and to predict effects such as detector efficiencies and smearing. GEANT4 uses many underlying models to predict particle interaction kinematics, and uncertainty in these models leads to uncertainty in high energy physics measurements. The GEANT4 collaboration recently made free parameters in some models accessible through partnership with GEANT4 developers. We present a study of the impact of varying parameters in three GEANT4 hadronic physics models on agreement with thin target datasets and describe fits to these datasets using the Professor model tuning framework [1]. We find that varying parameters produces substantially better agreement with some datasets, but that more degrees of freedom are required for full agreement. This work is a first step towards a common framework for propagating uncertainties in GEANT4 models to high energy physics measurements, and we outline future work required to complete that goal.
id cern-2695230
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26952302023-08-02T03:06:30Zdoi:10.1088/1748-0221/15/02/P02025http://cds.cern.ch/record/2695230engElvira, V.Fields, L.Genser, K.L.Hatcher, R.Ivanchenko, V.Kelsey, M.Koi, T.Perdue, G.N.Ribon, A.Uzhinsky, V.Wright, D.H.Yarba, J.Jun, S.Y.GEANT4 Parameter Tuning Using Professorhep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThe GEANT4 toolkit is used extensively in high energy physics to simulate the passage of particles through matter and to predict effects such as detector efficiencies and smearing. GEANT4 uses many underlying models to predict particle interaction kinematics, and uncertainty in these models leads to uncertainty in high energy physics measurements. The GEANT4 collaboration recently made free parameters in some models accessible through partnership with GEANT4 developers. We present a study of the impact of varying parameters in three GEANT4 hadronic physics models on agreement with thin target datasets and describe fits to these datasets using the Professor model tuning framework [1]. We find that varying parameters produces substantially better agreement with some datasets, but that more degrees of freedom are required for full agreement. This work is a first step towards a common framework for propagating uncertainties in GEANT4 models to high energy physics measurements, and we outline future work required to complete that goal.The Geant4 toolkit is used extensively in high energy physics to simulate the passage of particles through matter and to predict effects such as detector efficiencies and smearing. Geant4 uses many underlying models to predict particle interaction kinematics, and uncertainty in these models leads to uncertainty in high energy physics measurements. The Geant4 collaboration recently made free parameters in some models accessible through partnership with Geant4 developers. We present a study of the impact of varying parameters in three Geant4 hadronic physics models on agreement with thin target datasets and describe fits to these datasets using the Professor model tuning framework. We find that varying parameters produces substantially better agreement with some datasets, but that more degrees of freedom are required for full agreement. This work is a first step towards a common framework for propagating uncertainties in Geant4 models to high energy physics measurements, and we outline future work required to complete that goal.arXiv:1910.06417FERMILAB-PUB-19-526-SCDoai:cds.cern.ch:26952302019-10-14
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Elvira, V.
Fields, L.
Genser, K.L.
Hatcher, R.
Ivanchenko, V.
Kelsey, M.
Koi, T.
Perdue, G.N.
Ribon, A.
Uzhinsky, V.
Wright, D.H.
Yarba, J.
Jun, S.Y.
GEANT4 Parameter Tuning Using Professor
title GEANT4 Parameter Tuning Using Professor
title_full GEANT4 Parameter Tuning Using Professor
title_fullStr GEANT4 Parameter Tuning Using Professor
title_full_unstemmed GEANT4 Parameter Tuning Using Professor
title_short GEANT4 Parameter Tuning Using Professor
title_sort geant4 parameter tuning using professor
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/15/02/P02025
http://cds.cern.ch/record/2695230
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