Fragment productions in DJBUU and SQMD: comparative study

Fuente: arXiv
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Autores principales: Kim, Dae Ik, Lee, Chang-Hwan, Kim, Kyungil, Kim, Youngman, Jeon, Sangyong
Formato: Preprint
Publicado: 2022
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author Kim, Dae Ik
Lee, Chang-Hwan
Kim, Kyungil
Kim, Youngman
Jeon, Sangyong
author_facet Kim, Dae Ik
Lee, Chang-Hwan
Kim, Kyungil
Kim, Youngman
Jeon, Sangyong
contents We study $^{208}$Pb+$^{40,48}$Ca reactions at $E_{\rm beam}$ = 50, 100 AMeV with DJBUU and SQMD transport codes. We compare the large primary fragments from the two codes at the end of the simulation time. We observe that overall the two models produce similar fragments. However, we see a noticeable difference between DJBUU and SQMD at $E_{\rm beam}=100$ AMeV with the impact parameter $b$ = 0 fm and discuss this difference in terms of the difference in the equation of state adopted in the two models and the difference in stability inherent to the BUU-type and QMD-type models.
format Preprint
id arxiv_https___arxiv_org_abs_2206_12090
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Fragment productions in DJBUU and SQMD: comparative study
Kim, Dae Ik
Lee, Chang-Hwan
Kim, Kyungil
Kim, Youngman
Jeon, Sangyong
Nuclear Theory
We study $^{208}$Pb+$^{40,48}$Ca reactions at $E_{\rm beam}$ = 50, 100 AMeV with DJBUU and SQMD transport codes. We compare the large primary fragments from the two codes at the end of the simulation time. We observe that overall the two models produce similar fragments. However, we see a noticeable difference between DJBUU and SQMD at $E_{\rm beam}=100$ AMeV with the impact parameter $b$ = 0 fm and discuss this difference in terms of the difference in the equation of state adopted in the two models and the difference in stability inherent to the BUU-type and QMD-type models.
title Fragment productions in DJBUU and SQMD: comparative study
topic Nuclear Theory
url https://arxiv.org/abs/2206.12090