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首页> 外文期刊>Hyperfine Interactions: Journal Devoted to Research in the Border Regions of Solid State, Atomic and Nuclear Physics >Combined analysis of the low-energy enhancement of the gamma-strength function and the giant dipole resonance
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Combined analysis of the low-energy enhancement of the gamma-strength function and the giant dipole resonance

机译:伽马强度函数低能量增强的综合分析及巨大偶极谐振

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摘要

The nuclear dipole polarizability is mainly governed by the dynamics of the giant dipole resonance and has been investigated along with the effects of the low-energy enhancement of the photon strength function for nuclides in medium- and heavy-mass nuclei. Cubic-spline interpolations to both data sets show a significant reduction of the nuclear dipole polarizability for semi-magic and doubly magic nuclei, with magic numbers N = 28, 50, 82 and 126, which supports shell effects at high-excitation energies from the quasi-continuum to the giant dipole resonance. This work expands on the data analysis of our recent publication in Ngwetsheni and Orce (Phys. Lett. B 792, 335, 2019), which reveals a new spectroscopic probe to search for "old" and "new" magic numbers at high-excitation energies. New results presented in this work suggest an even higher sensitivity of the nuclear polarizability to shell effects when extrapolating the low-energy enhancement at lower gamma-ray energies.
机译:核偶极极化性主要受巨子偶极共振的动态来控制,并且已经研究过,以及低能低能量增强光子强度功能对中重核的核素的影响。 两个数据集的立方样条插值显示出半魔术和双魔核的核偶极偏热性的显着降低,魔法数n = 28,50,82和126,它支持从中的高励磁能量的壳效应 准连续统一巨子共振。 这项工作扩展了我们最近在Ngwetsheni和Orce(Phystte)的数据分析 能量。 本作作品中提出的新结果表明,当在较低伽马射线能量的低能量增强时,核极化性对壳体效应的较高敏感性。

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