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Effects of sequential decay on collective flows and nuclear stopping power in heavy-ion collisions at intermediate energies

Authors :
Xiao, Kui
Li, PengCheng
Wang, YongJia
Liu, FuHu
Li, QingFeng
Source :
Nucl.Sci.Tech. 34 (2023) 4, 62
Publication Year :
2023

Abstract

In this study, the rapidity distribution, collective flows, and nuclear stopping power in $^{197}\mathrm{Au}+^{197}\mathrm{Au}$ collisions at intermediate energies were investigated using the ultrarelativistic quantum molecular dynamics (UrQMD) model with GEMINI++ code. The UrQMD model was adopted to simulate the dynamic evolution of heavy-ion collisions, whereas the GEMINI++ code was used to simulate the decay of primary fragments produced by UrQMD. The calculated results were compared with the INDRA and FOPI experimental data. It was found that the rapidity distribution, collective flows, and nuclear stopping power were affected to a certain extent by the decay of primary fragments, especially at lower beam energies. Furthermore, the experimental data of the collective flows and nuclear stopping power at the investigated beam energies were better reproduced when the sequential decay effect was included.<br />Comment: 9 pages, 8 figures, accepted by Nucl.Sci.Tech

Subjects

Subjects :
Nuclear Theory
Nuclear Experiment

Details

Database :
arXiv
Journal :
Nucl.Sci.Tech. 34 (2023) 4, 62
Publication Type :
Report
Accession number :
edsarx.2306.00655
Document Type :
Working Paper
Full Text :
https://doi.org/10.1007/s41365-023-01205-3