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Shell-Structure and Pairing Interaction in Superheavy Nuclei: Rotational Properties of the Z=104 Nucleus (256)Rf

机译:超重核中的壳结构和配对相互作用:Z = 104核(256)Rf的旋转特性

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摘要

The rotational band structure of the Z = 104 nucleus (256)Rf has been observed up to a tentative spin of 20h using state-of-the-art gamma-ray spectroscopic techniques. This represents the first such measurement in a superheavy nucleus whose stability is entirely derived from the shell-correction energy. The observed rotational properties are compared to those of neighboring nuclei and it is shown that the kinematic and dynamic moments of inertia are sensitive to the underlying single-particle shell structure and the specific location of high-j orbitals. The moments of inertia therefore provide a sensitive test of shell structure and pairing in superheavy nuclei which is essential to ensure the validity of contemporary nuclear models in this mass region. The data obtained show that there is no deformed shell gap at Z = 104, which is predicted in a number of current self-consistent mean-field models.
机译:使用最新的伽马射线光谱技术,可以观察到Z = 104核(256)Rf的旋转带结构,直到实验性旋转20h。这代表了超重核中的首次此类测量,其稳定性完全源自壳层校正能。将观测到的旋转特性与相邻原子核的旋转特性进行比较,结果表明,运动和动态惯性矩对下面的单粒子壳结构和高j轨道的特定位置敏感。因此,惯性矩为超重核中的壳结构和配对提供了灵敏的测试,这对于确保现代核模型在该质量区域中的有效性至关重要。获得的数据表明,在Z = 104处没有变形的壳间隙,这是在许多当前的自洽平均场模型中预测的。

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