论文标题
核簇之间的有效相互作用
Effective interactions between nuclear clusters
论文作者
论文摘要
使用局部核子nucleon〜($ nn $)力研究了两个核簇,$ d+d $,$ t+t $和$α+α$之间的有效相互作用。结果表明,在所有集群间距离中,自旋对齐的$ d+d $系统中的相互作用是排斥的,而$α+α$和自旋成分的$ t+t $系统在中等距离上具有吸引力。相同的核子对之间的Pauli阻塞负责集群簇排斥,并在浅层结合极限中占主导地位。我们证明,如果$ nn $ force具有非零范围,并且足够强大以形成一个深厚的$ d $ cluster,或者如果$ nn $ force具有偶数和奇特的吸引力,则可以约束两个$ d $ clusters。还讨论了一个组件比另一个组件重得多,并且讨论了它们与核系统中的群间相互作用的关系。我们的发现为在文献中数值获得的结论提供了一个概念基础,即增加有吸引力的核子核子相互作用的局部部分的范围或强度会导致更具吸引力的群集簇相互作用。
The effective interactions between two nuclear clusters, $d+d$, $t+t$, and $α+α$, are investigated within a cluster model using local nucleon-nucleon~($NN$) forces. It is shown that the interaction in the spin-aligned $d+d$ system is repulsive for all inter-cluster distances, whereas the $α+α$ and spin-aligned $t+t$ systems are attractive at intermediate distances. The Pauli blocking between identical-nucleon pairs is responsible for the cluster-cluster repulsion and becomes dominant in the shallow binding limit. We demonstrate that two $d$-clusters could be bound if the $NN$ force has nonzero range and is strong enough to form a deeply bound $d$-cluster, or if the $NN$ force has both even-parity and odd-parity attraction. Effective dimer-dimer interactions for general quantum systems of two-component fermions are also discussed in heavy-light mass limit, where one component is much heavier than the other, and their relation to inter-cluster interactions in nuclear systems are discussed. Our findings provide a conceptual foundation for conclusions obtained numerically in the literature, that increasing the range or strength of the local part of the attractive nucleon-nucleon interaction results in a more attractive cluster-cluster interaction.