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A revisit to the neutron skin thickness of neutron-rich nuclei in the statistical abrasion ablation model

A revisit to the neutron skin thickness of neutron-rich nuclei in the statistical abrasion ablation model
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摘要 The cross sections of the fragments produced in the projectile fragmentation reactions of the even calcium isotopes from A=36 to A=52 are calculated using the statistical abrasion ablation model.The neutron skin thickness are studied by investigating the fragments isotopic cross section distributions.The neutron-skin thicknesses of the calcium isotopes have a good linear correlation to the peak positions of their fragment isotopic cross section distributions.The correlation between the neutron skin thickness and the neutron density distributions of 48 Ca is investigated by introducing a parameter to adjust the diffuseness parameter in the fermi-type density distribution. The cross sections of the fragments produced in the projectile fragmentation reactions of the even calcium isotopes from A=36 to A=52 are calculated using the statistical abrasion ablation model.The neutron skin thickness are studied by investigating the fragments isotopic cross section distributions.The neutron-skin thicknesses of the calcium isotopes have a good linear correlation to the peak positions of their fragment isotopic cross section distributions.The correlation between the neutron skin thickness and the neutron density distributions of 48 Ca is investigated by introducing a parameter to adjust the diffuseness parameter in the fermi-type density distribution.
机构地区 Department of Physics
出处 《Chinese Physics C》 SCIE CAS CSCD 2010年第9期1469-1471,共3页 中国物理C(英文版)
基金 Supported by National Science Foundation of China (10905017,10775168) Shanghai Development Foundation for Science and Technology (06QA14062) Program for Innovative Research Team (in Science and Technology) in University of Henan Province,China (2010IRTSTHN002) the State Key Program of Basic Research of China (2007CB815004)
关键词 neutron rich nucleus neutron skin thickness projectile fragmentation neutron rich nucleus neutron skin thickness projectile fragmentation
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