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Magic gaps and intruder levels in triaxially superdeformed nuclei

机译:三轴超形变核的魔术间隙和入侵者能级

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Nuclear shell model calculations based on a modified harmonic-oscillator potential result in amazingly stable triaxial nuclear shapes. Major gaps in the single-particle energy spectra at proton number 71 and neutron number 94 combine constructively at low and intermediate rotational frequencies. At high frequencies, gaps at proton number 72 and neutron number 97 combine in an equally favourable way. The sizes of the gaps may be as large as 35% of the values for the gaps at the classical magic numbers 50 and 82 at spherical shape. The dependence on the positions of the intruder levels in forming the gaps is discussed. Experimentally observed rotational bands in lutetium (Z = 71) and hafnium (Z = 72) appear in isotopes and frequency ranges, which are consistent with the gaps in the theoretical single-particle energy spectra.
机译:基于修改后的谐振子电势的核壳模型计算可得出非常稳定的三轴核形状。在低和中旋转频率下,质子数为71和中子数为94的单粒子能谱中的主要间隙相长地结合。在高频下,质子数72和中子数97的间隙以同样有利的方式结合在一起。间隙的大小可以大到球形的经典魔术数50和82的间隙值的35%。讨论了在形成间隙时对入侵者水平位置的依赖性。实验观察到的rotational(Z = 71)和ha(Z = 72)的旋转带出现在同位素和频率范围内,与理论单粒子能谱中的间隙一致。

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