论文标题

$^{8-10} $中的动量分布的聚类结构的演变

Evolution of clustering structure through the momentum distributions in $^{8-10}$Be isotopes

论文作者

Li, Songjie, Myo, Takayuki, Zhao, Qing, Toki, Hiroshi, Horiuchi, Hisashi, Xu, Chang, Liu, Jian, Lyu, Mengjiao, Ren, Zhongzhou

论文摘要

我们通过$^{8-10} $中的动量分布研究聚类结构的演变。通过边缘型$α$ - $α$波函数的动量分布讨论了集群间反对称性的核子动力学。对于小$α$ - $α$距离的州,我们观察到一个明显的抑郁症,在零momentum处有倾角结构,并且在相对较高的动量区域的尾巴上有增强的尾巴。此外,我们在动量空间的固有框架中找到了“群集结构”,这与其在坐标空间中的显着$α$ cluster溶解相辅相成。对于物理$^{8-10} $是同位素,采用了tohsaki-horiuchi-schuck-r {Ö} pke(thsr)波函数。在$^{8-10} $内的两个$α$ -CLUSTER的核子分布的零孔分布的零孔分布的零momentum处的连续抑郁症证明了从稀聚类状态到紧凑的状态的演变。对于紧凑型$^{10} $是核,所有核子的动量分布在零孔均具有浸入结构时显示出明显的抑郁症,发现这是由簇间反对称和$ P $ -Orbit占据中性子占据的贡献。这项研究提出了一个新的窗口,以通过核的低摩孔成分来研究$α$ clustering效应,该核成分有望扩展到较重的核聚类状态。

We investigate the evolution of clustering structure through the momentum distributions in the $^{8-10}$Be isotopes. The nucleon dynamics within the inter-cluster antisymmetrization are discussed via the momentum distribution of a Brink type $α$-$α$ wave function. For the state with a small $α$-$α$ distance, we observe a significant depression with a dip structure at zero-momentum and an enhanced tail at relatively higher momentum region. In addition, we find the "cluster structure" in the intrinsic frame of momentum space, which is complementary to its significant $α$-cluster dissolution in the coordinate space because of the strong antisymmetrization. For the physical $^{8-10}$Be isotopes, the Tohsaki-Horiuchi-Schuck-R{ö}pke (THSR) wave functions are adopted. The evolution from the dilute clustering state to the compact one is demonstrated by a successive depression at the zero-momentum of nucleon distribution for the two $α$-clusters within $^{8-10}$Be isotopes. For the compact $^{10}$Be nucleus, the momentum distribution of all nucleons shows significant depression at zero-momentum with a dip structure, which is found to be contributed by both the inter-cluster antisymmetrization and the $p$-orbit occupation of the valence neutrons. This study proposes a new window for the investigations of the $α$-clustering effects via the low-momentum components of nuclei, which is expected to be extended to the heavier nuclear clustering states.

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