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Octupole deformation in the ground states of even-even Z similar to 96, N similar to 196 actinides and superheavy nuclei

机译:octupole变形在偶数z的地面状态类似于96,n类似于196个散肌和超核核

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摘要

A systematic search for axial octupole deformation in the actinides and superheavy nuclei with proton numbers Z = 88-126 and neutron numbers from the two-proton drip line up to N = 210 was performed in covariant density functional theory (DFT) using four state-of-the-art covariant energy density functionals representing different model classes. The nuclei in the Z similar to 96, N similar to 196 region of octupole deformation were investigated in detail and the systematic uncertainties in the description of their observables were quantified. A similar region of octupole deformation exists also in Skyrme DFT and microscopic+macroscopic approaches but it is centered at somewhat different particle numbers. Theoretical uncertainties in the predictions of the regions of octupole deformation increase on going to superheavy nuclei with Z similar to 120, N similar to 190. There are no octupole deformed nuclei for Z = 112-126 in covariant DFT calculations. This agrees with Skyrme DFT calculations, but disagrees with Gogny DFT and microscopic+ macroscopic calculations which predict an extended Z similar to 120, N similar to 190 region of octupole deformation.
机译:使用四个状态的协助密度泛函理论(DFT)进行具有质子数Z = 88-126的轴向Z = 88-126的轴向Octupole变形和具有来自两种质子滴注线的中子数的系统搜索。艺术协调能量密度函数代表不同的模型类。在类似于96,N类似于96,N的核,详细研究了与196个区域的196个区域,并定量了其可观察结果描述中的系统不确定性。 Skyrme DFT和微观+宏观方法中也存在类似的Octupole变形区域,但它以某种不同的颗粒数为中心。在与Z类似于120时,Z octhole变形区域预测的理论不确定性增加了与Z类似于120,n的Z Z = 112-126中的Z = 112-126。这与斯基尔德DFT计算同意,但与Gogny DFT和微观+宏观计算不同意,其预测延伸Z类似于120,N类似于octupole变形的190个区域。

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