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Isoscaling properties for neutron-rich fragments in highly asymmetric heavy ion collision systems

Traditionally, isoscaling has been interpreted and applied within the framework of the grand canonical ensemble, based on the assumption that fragment production occurs following the attainment of a statistical equilibrium state. However, the influence of the symmetry energy can lead to differences...

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Bibliographic Details
Published in:Chinese physics C 2024-06, Vol.48 (6), p.64103
Main Authors: Peng 彭, Dan 丹, Ma 马, Chun-Wang 春旺, Qiao 乔, Chun-Yuan 春源, Liu 刘, Xing-Quan 星泉, Wei 魏, Hui-Ling 慧玲
Format: Article
Language:English
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Summary:Traditionally, isoscaling has been interpreted and applied within the framework of the grand canonical ensemble, based on the assumption that fragment production occurs following the attainment of a statistical equilibrium state. However, the influence of the symmetry energy can lead to differences in the neutron and density distribution in neutron-rich nuclei. This in turn may impact the isoscaling parameters (usually denoted by α and β ). We examine the isoscaling properties for neutron-rich fragments produced in highly asymmetric systems on inverse kinematics, namely Ca and Ni + Be at 140 MeV per nucleon. We evaluate α and β values and sort them as a function of the neutron excess . The significant differences in α extracted from fragments within different ranges of I emphasize the importance of understanding the dependence of isoscaling parameters on fragments generated in various collision regions. Furthermore, the value for a specific fragment in small size and highly isospin asymmetry systems can serve as a probe to detect the variations in neutron density and proton density in different regions of the nucleus and indicate the limitations of theoretical models in investigating these issues.
ISSN:1674-1137
2058-6132
DOI:10.1088/1674-1137/ad33bd