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首页> 外文期刊>Annals of Physics >Interpretation of the anomaly in the diffuseness parameter of the Woods-Saxon potential for light fusion reactions using the effects of nuclear matter equation of state
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Interpretation of the anomaly in the diffuseness parameter of the Woods-Saxon potential for light fusion reactions using the effects of nuclear matter equation of state

机译:利用核事物方程效应解释了木材 - 撒克逊潜力的扩散参数的异常态度

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摘要

The present study has been aimed at understanding the role of nuclear matter (NM) incompressibility effects on the description of the problem of the abnormally large diffuseness parameter of the Woods-Saxon (WS) potential for the fusion reactions induced by the light-mass nuclei. In order to assess this aim, we simulate theoretically the saturation properties of NM within the framework of the double-folding (DF) model for a total of 26 colliding systems with condition 64 <= Z(1)Z(2) <= 204 for charge product of their participant nuclei. It is shown that the DF model supplemented with the effects of nuclear matter equation of state (EOS) provides an appropriate description for measured fusion cross sections of our selected systems at around and above barrier energies. We find that the diffuseness parameters of the equivalent WS potential fitted to the DF model in the fusion barrier region are ranging from 0.62 to 0.71 fm, whereas this range is increased to a(ws) = 0.66 - 0.81 fm after modeling the incompressibility effects. Our results show that the extracted values of the diffuseness parameter based on the modified form of the DF model follow an increasing trend with the charge product Z(1)Z(2). We also present for the first time a discussion on a decreasing linear dependence of the diffuseness parameter of the nucleus nucleus potential on the nuclear incompressibility constant K. (C) 2019 Elsevier Inc. All rights reserved.
机译:本研究旨在了解核物质(NM)不可压制性效应对由轻质核诱导的融合反应的融合反应的异常大的扩散参数的描述的描述的作用。为了评估这一目标,我们在理论上模拟了NM在双折叠(DF)模型的框架内NM的饱和度,总共26个碰撞系统,条件64 <= Z(1)Z(2)<= 204对于他们的参与者核的充电产品。结果表明,补充了状态(EOS)核物质方程效果的DF模型为我们的所选系统的测量融合截面提供了适当的描述,其在周围和上述屏障能量上。我们发现,在融合阻隔区域中拟合到DF模型的等效WS电位的扩散参数的范围为0.62至0.71 fm,而在建模不可压缩效应之后,该范围增加到(WS)= 0.66-0.81 fm。我们的结果表明,基于DF模型的改进形式的扩散参数提取值跟随电荷产品Z(1)Z(2)的增加趋势。我们还在第一次讨论核心核潜在核心常数常数K.(c)2019年Elsevier Inc.保留的所有权利的降低线性依赖性的讨论。

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