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Backbending Phenomena in Even-Even Hf162-172 Isotopes

机译:偶数HF162-172同位素中的基础现象

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This study probes the backbending phenomena in even-even Hf162-172 isotopes. Experimental ground-state rotational energies up to J(pi) = 36(+) states were used to calculate the variation of the moment of inertia against the square of rotational angular frequency. The result shows that the calculated values of the moment of inertia for heavy mass isotopes; Hf-170 and Hf-172, increase progressively over an increasing square of angular frequency. However, the Hf-162, Hf-164, Hf-166, and Hf-168 isotopes exhibit a sharp bending with an S-shaped curve. While J((1)) the kinematical moment of inertia maintains the backbending shapes in these nuclei, the dynamical moment of inertia J((2)) shows significant responses to the changes in J((1)) and.rot, giving each of these isotopes a unique signature. These backbending shapes, J((1)) increasing, and the fluctuations in J((2)) may be due to a rapid quasiparticle alignment in the considered Hf nuclei. The closeness of the crossing frequency between the first and second bands is also investigated, we propose that the second band crossing is due to the alignment of a pair of protons (proton-pair alignment).
机译:本研究探讨了Hf162-172同位素中的倒转现象。实验基态转动能高达J(pi)=36(+)态,用于计算转动惯量相对于转动角频率平方的变化。结果表明,重质量同位素转动惯量的计算值;Hf-170和Hf-172,随着角频率的平方增加而逐渐增加。然而,Hf-162、Hf-164、Hf-166和Hf-168同位素呈现出S形曲线的急剧弯曲。虽然J((1))的运动惯性矩保持了这些原子核的后弯形状,但动力学惯性矩J((2))对J((1))和的变化表现出显著的响应。腐烂,赋予每一种同位素独特的特征。这些后弯形状,J((1))增加,以及J((2))中的波动可能是由于所考虑的Hf核中的快速准粒子排列。我们还研究了第一带和第二带交叉频率的接近性,我们认为第二带交叉是由于一对质子的排列(质子对排列)。

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