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Potential energy surfaces of actinide nuclei from a multidimensional constrained covariant density functional theory: Barrier heights and saddle point shapes

机译:基于多维约束协变密度泛函理论的act系原子核的势能面:势垒高度和鞍点形状

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摘要

The potential energy surfaces of actinide nuclei in the (β20,β22,β30) deformation space are obtained from a multidimensional constrained covariant density functional theory. With this newly developed theory, we are able to explore the importance of the triaxial and octupole shapes simultaneously along the whole fission path. It is found that aside from the octupole deformation, the triaxiality also plays an important role upon the second fission barriers. Both the outer and the inner barriers are lowered by the triaxial deformation compared with axially symmetric results. This lowering effect for the reflection-asymmetric outer barrier is 0.5~1 MeV, accounting for 10%~20% of the barrier height. With the inclusion of the triaxial deformation, a good agreement with the data for the outer barriers of actinide nuclei is achieved.
机译:从多维约束协变密度泛函理论获得(β20,β22,β30)变形空间中act系原子核的势能面。利用这一新近发展的理论,我们能够在整个裂变路径上同时探索三轴和八极形状的重要性。已经发现,除了八极形变之外,三轴性在第二裂变屏障上也起着重要作用。与轴向对称结果相比,外部和内部势垒都因三轴变形而降低。反射非对称外层势垒的下降效果为0.5〜1 MeV,约占势垒高度的10%〜20%。通过包含三轴变形,可以实现与act系元素核外层壁垒数据的良好一致性。

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