7Be+28Si近势垒弹性散射的团簇折叠模型分析

IF 3.4 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR Journal of Physics G: Nuclear and Particle Physics Pub Date : 2023-01-06 DOI:10.1088/1361-6471/acb0e8
M. Anwar, A. Hemmdan
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引用次数: 0

摘要

在光学模型的框架下,分析了放射性弹丸7Be在库仑势垒附近四种能量下对28Si靶的弹性散射。团簇折叠模型用于确定核光学势的实部。为了进行比较,基于7Be密度分布的两种不同形式,使用DDM3Y有效NN相互作用产生了两个微观光学势。所有获得的实势,连同唯象的Woods-Saxon虚部,都成功地再现了测量角度范围内的弹性散射角分布。检验了通过实验数据的最佳拟合产生的实强度和虚强度的能量依赖性。在所考虑的能量范围内既不能观察到通常的阈值异常也不能观察到破裂阈值异常。所获得的截面已经缩小,并与早期在库仑势垒附近的同一靶上的7Li的理论和实验数据进行了比较。
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Cluster folding model analysis of the 7Be+28Si elastic scattering in the near-barrier
In the framework of the optical model, the elastic scattering of the radioactive projectile 7Be on the 28Si target at four energies near Coulomb barrier has been analyzed. The cluster folding model is used to determine the real part of the nuclear optical potential. For comparison, two microscopic optical potentials have been generated using the DDM3Y effective NN interaction based upon two different forms for 7Be density distribution. All the obtained real potentials, in conjunction with phenomenological Woods-Saxon imaginary parts, have successfully reproduced the elastic scattering angular distributions over the measured angular range. The energy dependence of the real and imaginary strengths that are produced by the best fit of the experimental data was examined. Neither the usual threshold anomaly nor the breakup threshold anomaly can be observed at the considered energy ranges. The obtained cross sections have been reduced and compared with earlier theoretical and experimental data of 7Li on the same target near the Coulomb barrier.
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来源期刊
CiteScore
7.60
自引率
5.70%
发文量
105
审稿时长
1 months
期刊介绍: Journal of Physics G: Nuclear and Particle Physics (JPhysG) publishes articles on theoretical and experimental topics in all areas of nuclear and particle physics, including nuclear and particle astrophysics. The journal welcomes submissions from any interface area between these fields. All aspects of fundamental nuclear physics research, including: nuclear forces and few-body systems; nuclear structure and nuclear reactions; rare decays and fundamental symmetries; hadronic physics, lattice QCD; heavy-ion physics; hot and dense matter, QCD phase diagram. All aspects of elementary particle physics research, including: high-energy particle physics; neutrino physics; phenomenology and theory; beyond standard model physics; electroweak interactions; fundamental symmetries. All aspects of nuclear and particle astrophysics including: nuclear physics of stars and stellar explosions; nucleosynthesis; nuclear equation of state; astrophysical neutrino physics; cosmic rays; dark matter. JPhysG publishes a variety of article types for the community. As well as high-quality research papers, this includes our prestigious topical review series, focus issues, and the rapid publication of letters.
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