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Density Functional Theory studies of cluster states in nuclei

机译:原子团簇态的密度泛函理论研究

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摘要

The framework of nuclear energy density functionals is applied to a study of the formation and evolution of cluster states in nuclei. The relativistic functional DD-ME2 is used in triaxial and reflection-asymmetric relativistic Hartree-Bogoliubov calculations of relatively light $N = Z$ and neutron-rich nuclei. The role of deformation and degeneracy of single-nucleon states in the formation of clusters is analysed, and interesting cluster structures are predicted in excited configurations of Be, C, O, Ne, Mg, Si, S, Ar and Ca $N = Z$ nuclei. Cluster phenomena in neutron-rich nuclei are discussed, and it is shown that in neutron-rich Be and C nuclei cluster states occur as a result of molecular bonding of $\alpha$-particles by the excess neutrons, and also that proton covalent bonding can occur in $^{10}$C.
机译:核能密度泛函的框架被应用于研究原子团簇状态的形成和演化。相对论功能性DD-ME2用于相对轻的$ N = Z $和富中子核的三轴和不对称反射相对论Hartree-Bogoliubov计算。分析了单核子态的变形和简并性在团簇形成中的作用,并预测了Be,C,O,Ne,Mg,Si,S,Ar和Ca的激发构型中有趣的团簇结构。 $核。讨论了富中子核中的团簇现象,并且表明在富中子的Be和C核中,团簇状态是由于过量中子通过$ \α$粒子的分子键合以及质子共价键合而产生的可以在$ ^ {10} $ C中发生。

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