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The FLUKA code for space applications: Recent developments

The FLUKA Monte Carlo transport code is widely used for fundamental research, radioprotection and dosimetry, hybrid nuclear energy system and cosmic ray calculations. The validity of its physical models has been benchmarked against a variety of experimental data over a wide range of energies, rangin...

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Autores principales: Andersen, V, Ballarini, F, Battistoni, G, Campanella, M, Carboni, M, Cerutti, F, Empl, A, Fassò, A, Ferrari, A, Gadioli, E, Garzelli, M V, Lee, K, Ottolenghi, A, Pelliccioni, M, Pinsky, L S, Ranft, J, Roesler, S, Sala, P R, Wilson, T L
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/818535
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author Andersen, V
Ballarini, F
Battistoni, G
Campanella, M
Carboni, M
Cerutti, F
Empl, A
Fassò, A
Ferrari, A
Gadioli, E
Garzelli, M V
Lee, K
Ottolenghi, A
Pelliccioni, M
Pinsky, L S
Ranft, J
Roesler, S
Sala, P R
Wilson, T L
author_facet Andersen, V
Ballarini, F
Battistoni, G
Campanella, M
Carboni, M
Cerutti, F
Empl, A
Fassò, A
Ferrari, A
Gadioli, E
Garzelli, M V
Lee, K
Ottolenghi, A
Pelliccioni, M
Pinsky, L S
Ranft, J
Roesler, S
Sala, P R
Wilson, T L
author_sort Andersen, V
collection CERN
description The FLUKA Monte Carlo transport code is widely used for fundamental research, radioprotection and dosimetry, hybrid nuclear energy system and cosmic ray calculations. The validity of its physical models has been benchmarked against a variety of experimental data over a wide range of energies, ranging from accelerator data to cosmic ray showers in the earth atmosphere. The code is presently undergoing several developments in order to better fit the needs of space applications. The generation of particle spectra according to up-to- date cosmic ray data as well as the effect of the solar and geomagnetic modulation have been implemented and already successfully applied to a variety of problems. The implementation of suitable models for heavy ion nuclear interactions has reached an operational stage. At medium/high energy FLUKA is using the DPMJET model. The major task of incorporating heavy ion interactions from a few GeV/n down to the threshold for inelastic collisions is also progressing and promising results have been obtained using a modified version of the RQMD-2.4 code. This interim solution is now fully operational, while waiting for the development of new models based on the FLUKA hadron-nucleus interaction code, a newly developed QMD code, and the implementation of the Boltzmann master equation theory for low energy ion interactions.
id cern-818535
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-8185352019-09-30T06:29:59Zhttp://cds.cern.ch/record/818535engAndersen, VBallarini, FBattistoni, GCampanella, MCarboni, MCerutti, FEmpl, AFassò, AFerrari, AGadioli, EGarzelli, M VLee, KOttolenghi, APelliccioni, MPinsky, L SRanft, JRoesler, SSala, P RWilson, T LThe FLUKA code for space applications: Recent developmentsAstrophysics and AstronomyThe FLUKA Monte Carlo transport code is widely used for fundamental research, radioprotection and dosimetry, hybrid nuclear energy system and cosmic ray calculations. The validity of its physical models has been benchmarked against a variety of experimental data over a wide range of energies, ranging from accelerator data to cosmic ray showers in the earth atmosphere. The code is presently undergoing several developments in order to better fit the needs of space applications. The generation of particle spectra according to up-to- date cosmic ray data as well as the effect of the solar and geomagnetic modulation have been implemented and already successfully applied to a variety of problems. The implementation of suitable models for heavy ion nuclear interactions has reached an operational stage. At medium/high energy FLUKA is using the DPMJET model. The major task of incorporating heavy ion interactions from a few GeV/n down to the threshold for inelastic collisions is also progressing and promising results have been obtained using a modified version of the RQMD-2.4 code. This interim solution is now fully operational, while waiting for the development of new models based on the FLUKA hadron-nucleus interaction code, a newly developed QMD code, and the implementation of the Boltzmann master equation theory for low energy ion interactions.oai:cds.cern.ch:8185352004
spellingShingle Astrophysics and Astronomy
Andersen, V
Ballarini, F
Battistoni, G
Campanella, M
Carboni, M
Cerutti, F
Empl, A
Fassò, A
Ferrari, A
Gadioli, E
Garzelli, M V
Lee, K
Ottolenghi, A
Pelliccioni, M
Pinsky, L S
Ranft, J
Roesler, S
Sala, P R
Wilson, T L
The FLUKA code for space applications: Recent developments
title The FLUKA code for space applications: Recent developments
title_full The FLUKA code for space applications: Recent developments
title_fullStr The FLUKA code for space applications: Recent developments
title_full_unstemmed The FLUKA code for space applications: Recent developments
title_short The FLUKA code for space applications: Recent developments
title_sort fluka code for space applications: recent developments
topic Astrophysics and Astronomy
url http://cds.cern.ch/record/818535
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