Light Cluster Production in Central Symmetric Heavy-Ion Reactions from Fermi to Gev Energies
Correlations and clustering are of great importance in the study of the Nuclear Equation of State. Information on these items/aspects can be obtained using heavy-ion reactions which are described by dynamical theories. We propose a dataset that will be useful for improving the description of light c...
Ausführliche Beschreibung
Autor*in: |
Rémi Bougault [verfasserIn] Bernard Borderie [verfasserIn] Abdelouahad Chbihi [verfasserIn] Quentin Fable [verfasserIn] John David Frankland [verfasserIn] Emmanuelle Galichet [verfasserIn] Tom Genard [verfasserIn] Diégo Gruyer [verfasserIn] Maxime Henri [verfasserIn] Marco La Commara [verfasserIn] Nicolas Le Neindre [verfasserIn] Ivano Lombardo [verfasserIn] Olivier Lopez [verfasserIn] Marian Pârlog [verfasserIn] Piotr Pawłowski [verfasserIn] Giuseppe Verde [verfasserIn] Emmanuel Vient [verfasserIn] Mariano Vigilante [verfasserIn] |
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Format: |
E-Artikel |
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Sprache: |
Englisch |
Erschienen: |
2021 |
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Übergeordnetes Werk: |
In: Symmetry - MDPI AG, 2009, 13(2021), 8, p 1406 |
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Übergeordnetes Werk: |
volume:13 ; year:2021 ; number:8, p 1406 |
Links: |
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DOI / URN: |
10.3390/sym13081406 |
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Katalog-ID: |
DOAJ031396550 |
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Light Cluster Production in Central Symmetric Heavy-Ion Reactions from Fermi to Gev Energies |
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Correlations and clustering are of great importance in the study of the Nuclear Equation of State. Information on these items/aspects can be obtained using heavy-ion reactions which are described by dynamical theories. We propose a dataset that will be useful for improving the description of light cluster production in transport model approaches. The dataset combines published and new data and is presented in a form that allows direct comparison of the experiment with theoretical predictions. The dataset is ranging in bombarding energy from 32 to 1930 A MeV. In constructing this dataset, we put in evidence the existence of a change in the light cluster production mechanism that corresponds to a peak in deuteron production. |
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Correlations and clustering are of great importance in the study of the Nuclear Equation of State. Information on these items/aspects can be obtained using heavy-ion reactions which are described by dynamical theories. We propose a dataset that will be useful for improving the description of light cluster production in transport model approaches. The dataset combines published and new data and is presented in a form that allows direct comparison of the experiment with theoretical predictions. The dataset is ranging in bombarding energy from 32 to 1930 A MeV. In constructing this dataset, we put in evidence the existence of a change in the light cluster production mechanism that corresponds to a peak in deuteron production. |
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Correlations and clustering are of great importance in the study of the Nuclear Equation of State. Information on these items/aspects can be obtained using heavy-ion reactions which are described by dynamical theories. We propose a dataset that will be useful for improving the description of light cluster production in transport model approaches. The dataset combines published and new data and is presented in a form that allows direct comparison of the experiment with theoretical predictions. The dataset is ranging in bombarding energy from 32 to 1930 A MeV. In constructing this dataset, we put in evidence the existence of a change in the light cluster production mechanism that corresponds to a peak in deuteron production. |
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