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Antisymmetrized molecular dynamics studies for exotic clustering phenomena in neutron-rich nuclei

机译:富中子核中奇异团簇现象的反对称分子动力学研究

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摘要

We present a review of recent works on clustering phenomena in unstable nuclei studied by antisymmetrized molecular dynamics (AMD). The AMD studies in these decades have uncovered novel types of clustering phenomena brought about by the excess neutrons. Among them, this review focuses on the molecule-like structure of unstable nuclei. One of the earliest discussions on the clustering in unstable nuclei was made for neutron-rich Be and B isotopes. AMD calculations predicted that the ground state clustering is enhanced or reduced depending on the number of excess neutrons. Today, the experiments are confirming this prediction as the change of the proton radii. Behind this enhancement and reduction of the clustering, there are underlying shell effects called molecular and atomic orbits. These orbits form covalent and ionic bonding of the clusters analogous to the atomic molecules. It was found that this "molecular-orbit picture" reasonably explains the low-lying spectra of Be isotopes. The molecular-orbit picture is extended to other systems having parity asymmetric cluster cores and to the three cluster systems. O and Ne isotopes are the candidates of the former, while the 3 alpha linear chains in C isotopes are the latter. For both subjects, many intensive studies are now in progress. We also pay a special attention to the observables which are the fingerprint of the clustering. In particular, we focus on the monopole and dipole transitions which are recently regarded as good probe for the clustering. We discuss how they have and will reveal the exotic clustering.
机译:我们目前对通过反对称分子动力学(AMD)研究的不稳定核中的聚集现象的最新研究进行综述。在过去的几十年中,AMD的研究发现了由过量中子带来的新型簇现象。其中,本文的重点是不稳定核的分子状结构。关于不稳定核中的聚集的最早讨论之一是富中子的Be和B同位素。 AMD计算预测,基态聚集会根据过量中子的数量而增加或减少。今天,实验证实了这一预测是质子半径的变化。在这种增强和减少聚类的背后,存在着被称为分子和原子轨道的潜在壳效应。这些轨道形成类似于原子分子的团簇的共价键和离子键。已经发现,该“分子轨道图”合理地解释了Be同位素的低光谱。分子轨道图扩展到具有奇偶性不对称簇核的其他系统和三个簇系统。 O和Ne同位素是前者的候选者,而C同位素中的3 alpha线性链则是后者。对于这两个主题,许多深入研究正在进行中。我们还特别注意可观测值,它们是聚类的指纹。特别是,我们专注于单极和偶极跃迁,它们最近被认为是聚类的良好探针。我们讨论了它们如何以及将揭示异国情调的集群。

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