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A new version of the event generator Sibyll

The event generator Sibyll can be used for the simulation of hadronic multiparticle production up to the highest cosmic ray energies. It is optimized for providing an economic description of those aspects of the expected hadronic final states that are needed for the calculation of air showers and at...

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Detalles Bibliográficos
Autores principales: Riehn, Felix, Engel, Ralph, Fedynitch, Anatoli, Gaisser, Thomas K., Stanev, Todor
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.236.0558
http://cds.cern.ch/record/2057049
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author Riehn, Felix
Engel, Ralph
Fedynitch, Anatoli
Gaisser, Thomas K.
Stanev, Todor
author_facet Riehn, Felix
Engel, Ralph
Fedynitch, Anatoli
Gaisser, Thomas K.
Stanev, Todor
author_sort Riehn, Felix
collection CERN
description The event generator Sibyll can be used for the simulation of hadronic multiparticle production up to the highest cosmic ray energies. It is optimized for providing an economic description of those aspects of the expected hadronic final states that are needed for the calculation of air showers and atmospheric lepton fluxes. New measurements from fixed target and collider experiments, in particular those at LHC, allow us to test the predictive power of the model version 2.1, which was released more than 10 years ago, and also to identify shortcomings. Based on a detailed comparison of the model predictions with the new data we revisit model assumptions and approximations to obtain an improved version of the interaction model. In addition a phenomenological model for the production of charm particles is implemented as needed for the calculation of prompt lepton fluxes in the energy range of the astrophysical neutrinos recently discovered by IceCube. After giving an overview of the new ideas implemented in Sibyll and discussing how they lead to an improved description of accelerator data, predictions for air showers and atmospheric lepton fluxes are presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20570492021-05-03T20:22:44Zdoi:10.22323/1.236.0558http://cds.cern.ch/record/2057049engRiehn, FelixEngel, RalphFedynitch, AnatoliGaisser, Thomas K.Stanev, TodorA new version of the event generator SibyllParticle Physics - PhenomenologyThe event generator Sibyll can be used for the simulation of hadronic multiparticle production up to the highest cosmic ray energies. It is optimized for providing an economic description of those aspects of the expected hadronic final states that are needed for the calculation of air showers and atmospheric lepton fluxes. New measurements from fixed target and collider experiments, in particular those at LHC, allow us to test the predictive power of the model version 2.1, which was released more than 10 years ago, and also to identify shortcomings. Based on a detailed comparison of the model predictions with the new data we revisit model assumptions and approximations to obtain an improved version of the interaction model. In addition a phenomenological model for the production of charm particles is implemented as needed for the calculation of prompt lepton fluxes in the energy range of the astrophysical neutrinos recently discovered by IceCube. After giving an overview of the new ideas implemented in Sibyll and discussing how they lead to an improved description of accelerator data, predictions for air showers and atmospheric lepton fluxes are presented.arXiv:1510.00568oai:cds.cern.ch:20570492015-10-02
spellingShingle Particle Physics - Phenomenology
Riehn, Felix
Engel, Ralph
Fedynitch, Anatoli
Gaisser, Thomas K.
Stanev, Todor
A new version of the event generator Sibyll
title A new version of the event generator Sibyll
title_full A new version of the event generator Sibyll
title_fullStr A new version of the event generator Sibyll
title_full_unstemmed A new version of the event generator Sibyll
title_short A new version of the event generator Sibyll
title_sort new version of the event generator sibyll
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.22323/1.236.0558
http://cds.cern.ch/record/2057049
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