论文标题

$^{66} $ Zn的偶极响应的模型无关测定,使用准单调和线性偏振光束

Model-independent determination of the dipole response of $^{66}$Zn using quasi-monoenergetic and linearly-polarized photon beams

论文作者

Savran, D., Isaak, J., Schwengner, R., Massarczyk, R., Scheck, M., Tornow, W., Battaglia, G., Beck, T., Finch, S. W., Fransen, C., Friman-Gayer, U., Gonzalez, R., Hoemann, E., Janssens, R. V. F., Johnson, S. R., Jones, M. D., Kleemann, J., Krishichayan, Little, D. R., O'Donnell, D., Papst, O., Pietralla, N., Sinclair, J., Werner, V., Wieland, O., Wilhelmy, J.

论文摘要

[背景]光子强度函数是与重元素核合成相关的计算中的重要成分。与光吸附横截面的关系允许通过研究原子核的光反应来实验地限制光子强度函数。 [目的]我们确定$^{66} $ Zn的光响应在5.6 meV至9.9 MeV的能量区域中,并分析“弹性”衰减通道对基态的贡献。另外,对于弹性通道和磁偶极转换,分开了。 [方法]使用线性偏振的准单调光子光束在高强度$γ$ ray源的情况下进行核共振实验。在200-300 keV的步骤中选择了5.6至9.9 MeV的光子束能量从5.6到9.9 MeV。随后的$γ$ - 射线光谱法使用了两个高纯净的锗探测器。 [结果]从使用光子束的单核特征的数据中提取了完整的光吸附横截面。对于基态衰减通道,电气和磁性偶极强度的平均贡献是分离的。也确定了平均分支比率返回基态。 [结论]新结果表明,与从$^{66} $ Zn上使用Bremsstrahung提取的值相比,较低的横截面。在后者中,从统计模型计算中估算了平均分支比率,以分析数据。与从目前的分析中提取的值相比,来自统计模型计算的相应估计值低估了该分支比率,这将部分解释从Bremsstrahlung数据确定的高横截面。

[Background] Photon strength functions are an important ingredient in calculations relevant for the nucleosynthesis of heavy elements. The relation to the photoabsorption cross section allows to experimentally constrain photon strength functions by investigating the photo-response of atomic nuclei. [Purpose] We determine the photoresponse of $^{66}$Zn in the energy region of 5.6 MeV to 9.9 MeV and analyze the contribution of the "elastic" decay channel back to the ground state. In addition, for the elastic channel electric and magnetic dipole transitions were separated. [Methods] Nuclear resonance fluorescence experiments were performed using a linearly-polarized quasi-monoenergetic photon beam at the High Intensity $γ$-ray Source. Photon beam energies from 5.6 to 9.9 MeV with an energy spread of about 3% were selected in steps of 200-300 keV. Two High Purity Germanium detectors were used for the subsequent $γ$-ray spectroscopy. [Results] Full photoabsorption cross sections are extracted from the data making use of the monoenergetic character of the photon beam. For the ground-state decay channel, the average contribution of electric and magnetic dipole strengths is disentangled. The average branching ratio back to the ground state is determined as well. [Conclusions] The new results indicate lower cross sections when compared to the values extracted from a former experiment using bremsstrahlung on $^{66}$Zn. In the latter, the average branching ratio to the ground state is estimated from statistical-model calculations in order to analyze the data. Corresponding estimates from statistical-model calculations underestimate this branching ratio compared to the values extracted from the present analysis, which would partly explain the high cross sections determined from the bremsstrahlung data.

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