稳定和不稳定氧同位素中的侏儒和巨偶极子态

Hiroyuki Sagawa, Toshio Suzuki
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引用次数: 0

摘要

我们在大尺度壳模型计算中研究了氧同位素的偶极态。计算得到的16O、17O和18O的光反应截面与实验观测值在ħω=15 MeV以下的低能区和在15 MeV < ħω≤30 MeV的高能巨共振区均有较好的一致性。我们发现在偶极巨共振(ħω≤15 MeV)下的跃迁强度耗尽了经典Thomas-Reiche-Kuhn和规则的10%,而在17O以上的重氧同位素中则超过了聚类和规则的40%。最近在GSI的库仑激发实验也证实了预测的20O和22O的Pigmy强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pigmy and giant dipole states in stable and unstable oxygen isotopes
We have studied dipole states of oxygen isotopes in large scale shell model calculations. The calculated photoreaction cross sections in 16O, 17O and 18O give reasonable agreement with experimental observations both in the low energy region below ħω=15 MeV and in the high energy giant resonance region (15 MeV < ħω ≤ 30 MeV). We found that the transition strength below dipole giant resonance (ħω ≤ 15 MeV) exhausts about 10% of the classical Thomas-Reiche-Kuhn sum rule and more than 40% of the cluster sum rule in heavier oxygen isotopes than 17O. The predicted Pigmy strengths in 20O and 22O are also confirmed by recent Coulomb excitation experiment at GSI.
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