Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions

The particle emission at intermediate velocities in mass asymmetric reactions is studied within the frame-work of classical molecular dynamics. Two reactions in the Fermi energy domain were modeled, 58Ni+C and 58Ni+Au at 34.5 MeV/nucleon. The availability of microscopic correlations at all times all...

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Autores principales: Chernomoretz, A., Gingras, L., Larochelle, Y., Beaulieu, L., Roy, R., St-Pierre, C., Dorso, C. O.
Formato: JOUR
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_05562813_v65_n5_p546131_Chernomoretz
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spelling todo:paper_05562813_v65_n5_p546131_Chernomoretz2023-10-03T15:34:59Z Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions Chernomoretz, A. Gingras, L. Larochelle, Y. Beaulieu, L. Roy, R. St-Pierre, C. Dorso, C. O. The particle emission at intermediate velocities in mass asymmetric reactions is studied within the frame-work of classical molecular dynamics. Two reactions in the Fermi energy domain were modeled, 58Ni+C and 58Ni+Au at 34.5 MeV/nucleon. The availability of microscopic correlations at all times allowed a detailed study of the fragment formation process. Special attention was paid to the physical origin of fragments and emission timescales, which allowed us to disentangle the different processes involved in the midrapidity particle production. Consequently, a clear distinction between a prompt preequilibrium emission and a delayed aligned asymmetric breakup of the heavier partner of the reaction was achieved. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_05562813_v65_n5_p546131_Chernomoretz
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
description The particle emission at intermediate velocities in mass asymmetric reactions is studied within the frame-work of classical molecular dynamics. Two reactions in the Fermi energy domain were modeled, 58Ni+C and 58Ni+Au at 34.5 MeV/nucleon. The availability of microscopic correlations at all times allowed a detailed study of the fragment formation process. Special attention was paid to the physical origin of fragments and emission timescales, which allowed us to disentangle the different processes involved in the midrapidity particle production. Consequently, a clear distinction between a prompt preequilibrium emission and a delayed aligned asymmetric breakup of the heavier partner of the reaction was achieved.
format JOUR
author Chernomoretz, A.
Gingras, L.
Larochelle, Y.
Beaulieu, L.
Roy, R.
St-Pierre, C.
Dorso, C. O.
spellingShingle Chernomoretz, A.
Gingras, L.
Larochelle, Y.
Beaulieu, L.
Roy, R.
St-Pierre, C.
Dorso, C. O.
Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
author_facet Chernomoretz, A.
Gingras, L.
Larochelle, Y.
Beaulieu, L.
Roy, R.
St-Pierre, C.
Dorso, C. O.
author_sort Chernomoretz, A.
title Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
title_short Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
title_full Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
title_fullStr Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
title_full_unstemmed Quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
title_sort quasiclassical model of intermediate velocity particle production in asymmetric heavy ion reactions
url http://hdl.handle.net/20.500.12110/paper_05562813_v65_n5_p546131_Chernomoretz
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