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FRIGA, A New Approach To Identify Isotopes and Hyper-nuclei In N-Body Transport Models
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FRIGA, A New Approach To Identify Isotopes and Hyper-nuclei In N-Body Transport Models
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We present a new approach to identify fragments in computer simulations of relativistic heavy ion collisions. It is based on the simulated annealing technique and can be applied to n-body transport models like the Quantum Molecular Dynamics. This new approach is able to predict isotope yields as well as hyper-nucleus production. In order to illustrate its predicting power, we confront this new method with experimental data and show the sensitivity on the parameters which govern the cluster formation.
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Cited by 1 Pith paper
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Modifications in clusterization procedures for heavy-ion collisions: minimum spanning tree, simulated annealing, coalescence
The Common Clusterization Library (CCL) provides open-source MST, simulated-annealing, and coalescence cluster finders with a new stable-cluster tracking algorithm, tested against ALADiN and NA49 data.
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