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A model for multifragmentation in heavy-ion reactions

From an experimental point of view, clear signatures of multifragmentation have been detected by different experiments. On the other hand, from a theoretical point of view, many different models, built on the basis of totally different and often even contrasting assumptions, have been provided to ex...

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Detalles Bibliográficos
Autores principales: Ferrari, A., Garzelli, M.V., Sala, P.R.
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1213701
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author Ferrari, A.
Garzelli, M.V.
Sala, P.R.
author_facet Ferrari, A.
Garzelli, M.V.
Sala, P.R.
author_sort Ferrari, A.
collection CERN
description From an experimental point of view, clear signatures of multifragmentation have been detected by different experiments. On the other hand, from a theoretical point of view, many different models, built on the basis of totally different and often even contrasting assumptions, have been provided to explain them. In this contribution we show the capabilities and the shortcomings of one of this models, a QMD code developed by us and coupled to the nuclear de-excitation module taken from the multipurpose transport and interaction code FLUKA, in reproducing the multifragmentation observations recently reported by the INDRA collaboration for the reaction Nb + Mg at a 30 MeV/A projectile bombarding energy. As far as fragment production is concerned, we also briefly discuss the isoscaling technique by considering reactions characterized by a different isospin asymmetry, and we explain how the QMD + FLUKA model can be applied to obtain information on the slope of isotopic yield ratios, which is crucially related to the symmetry energy of asymmetric nuclear matter.
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spelling cern-12137012023-03-14T17:34:47Zhttp://cds.cern.ch/record/1213701engFerrari, A.Garzelli, M.V.Sala, P.R.A model for multifragmentation in heavy-ion reactionsNuclear Physics - TheoryFrom an experimental point of view, clear signatures of multifragmentation have been detected by different experiments. On the other hand, from a theoretical point of view, many different models, built on the basis of totally different and often even contrasting assumptions, have been provided to explain them. In this contribution we show the capabilities and the shortcomings of one of this models, a QMD code developed by us and coupled to the nuclear de-excitation module taken from the multipurpose transport and interaction code FLUKA, in reproducing the multifragmentation observations recently reported by the INDRA collaboration for the reaction Nb + Mg at a 30 MeV/A projectile bombarding energy. As far as fragment production is concerned, we also briefly discuss the isoscaling technique by considering reactions characterized by a different isospin asymmetry, and we explain how the QMD + FLUKA model can be applied to obtain information on the slope of isotopic yield ratios, which is crucially related to the symmetry energy of asymmetric nuclear matter.From an experimental point of view, clear signatures of multifragmentation have been detected by different experiments. On the other hand, from a theoretical point of view, many different models, built on the basis of totally different and often even contrasting assumptions, have been provided to explain them. In this contribution we show the capabilities and the shortcomings of one of this models, a QMD code developed by us and coupled to the nuclear de-excitation module taken from the multipurpose transport and interaction code FLUKA, in reproducing the multifragmentation observations recently reported by the INDRA collaboration for the reaction Nb + Mg at a 30 MeV/A projectile bombarding energy. As far as fragment production is concerned, we also briefly discuss the isoscaling technique by considering reactions characterized by a different isospin asymmetry, and we explain how the QMD + FLUKA model can be applied to obtain information on the slope of isotopic yield ratios, which is crucially related to the symmetry energy of asymmetric nuclear matter.arXiv:0910.3416oai:cds.cern.ch:12137012009-10-20
spellingShingle Nuclear Physics - Theory
Ferrari, A.
Garzelli, M.V.
Sala, P.R.
A model for multifragmentation in heavy-ion reactions
title A model for multifragmentation in heavy-ion reactions
title_full A model for multifragmentation in heavy-ion reactions
title_fullStr A model for multifragmentation in heavy-ion reactions
title_full_unstemmed A model for multifragmentation in heavy-ion reactions
title_short A model for multifragmentation in heavy-ion reactions
title_sort model for multifragmentation in heavy-ion reactions
topic Nuclear Physics - Theory
url http://cds.cern.ch/record/1213701
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