Learning about the structure of giant resonances from their γ decay

W. Lv, Y. Niu, G. Colò
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引用次数: 3

Abstract

The direct $\gamma$-decays of the giant dipole resonance (GDR) and the giant quadrupole resonance (GQR) of $^{208}$Pb to low-lying states are investigated by means of a microscopic self-consistent model. The model considers effects beyond the linear response approximation. The strong sensitivity of $\gamma$-decay to the isospin of the involved states is proven. By comparing their decay widths, a much larger weight of the $3_{1}^{-}$ component in the GQR wave function of $^{208}$Pb is deduced, with respect to the weight of the $2_{1}^{+}$ component in the GDR wave function. Thus, we have shown that $\gamma$-decay is a unique probe of the resonance wave functions, and a testground for nuclear structure models.
从γ衰变中了解巨共振的结构
用微观自洽模型研究了$^{208}$Pb的巨偶极子共振(GDR)和巨四极子共振(GQR)到低洼态的直接$\gamma$-衰变。该模型考虑了线性响应近似之外的影响。证明了$\gamma$-衰变对相关态的同位旋具有很强的敏感性。通过比较它们的衰减宽度,可以推导出$^{208}$Pb的GQR波函数中$3_{1}^{-}$分量的权重比$2_{1}^{+}$分量的权重大得多。因此,我们已经证明$\gamma$-衰变是共振波函数的独特探针,也是核结构模型的试验场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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