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Triaxial quadrupole dynamics and the inner fission barrier of some heavy even-even nuclei

机译:一些沉重的偶核的三轴四极动力学与内部裂变屏障

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Background: Inner fission barriers of actinide nuclei have been known for a long time to be unstable with respect to the axial symmetry. On the other hand, taking into account the effect of the relevant adiabatic mass parameter reduces or even may wash out this instability. A proper treatment of the dynamics for both axial and triaxial modes is thus crucial to accurately determine the corresponding fission barriers. This entails in particular an accurate description of pairing correlations. Purpose: We evaluate the potential energies, moments of inertia, and vibrational mass parameters in a twodimensional relevant deformation space (corresponding to the usual β and γ quadrupole deformation parameters) for four actinide nuclei (~(236)U, ~(240)Pu, ~(248)Cm, and ~(252)Cf). We assess the relevance of our approach to describe the dynamics for a triaxial mode by computing the low energy spectra (exploring thus mainly the equilibrium deformation region). We evaluate the inner fission barrier heights releasing the axial symmetry constraint. Method: Calculations within the Hartree-Fock plus BCS approach are performed using the SkM* Skyrme effective interaction in the particle-hole channel and a seniority force in the particle-particle channel. The intensity of this residual interaction has been fixed to allow a good reproduction of some odd-even mass differences in the actinide region. Adiabatic mass parameters for the rotational and vibrational modes are calculated using the Inglis-Belyaev formula supplemented by a global renormalization factor taking into account the so-called Thouless-Valatin corrections. Spectra are obtained through the diagonalization of the corresponding Bohr collective Hamiltonian. Results: The experimental low energy spectra are qualitatively well reproduced by our calculations for the considered nuclei. Inner fission barrier heights are calculated and compared with available estimates from various experimental data. The reproduction of the data is
机译:背景:长时间已知肌细胞核内的内裂变屏障对轴对称性不稳定。另一方面,考虑到相关的绝热体质量参数的效果减少或甚至可能洗掉这种不稳定性。因此,适当处理轴向和三轴模式的动力学是至关重要的,可以准确地确定相应的裂变屏障。这需要特别需要对相关性的准确描述。目的:我们评估四维相关变形空间中的势能,惯性矩和振动质量参数(对应于常规β和γ四极性变形参数),用于四个神光细胞核(〜(236)U,〜(240)PU ,〜(248)cm,〜(252)cf)。我们通过计算低能谱(主要是平衡变形区域)来评估我们的方法来描述三轴模式的动态的方法。我们评估内部裂变屏障高度释放轴对称约束。方法:使用粒子孔通道中的SKM * Skyrme有效相互作用和粒子粒子通道中的资历力来执行Hartree-Fock Plus方法中的计算。这种残余相互作用的强度已经固定以允许良好的繁殖均匀常见于缺散区域中的一些奇数甚至质量差异。旋转和振动模式的绝热质量参数使用inglis-belyaev公式来计算,该公式补充在全球重整化因素中,考虑到所谓的瓦拉汀校正。通过相应的Bohr集体汉密尔顿人的对角化获得光谱。结果:实验性低能量谱通过我们的考虑核的计算定性良好地再现。计算内部裂变屏障高度并与来自各种实验数据的可用估计进行比较。数据的再现是

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