论文标题

$^{41,47,49} $ Ca同位素的低旋转粒子/孔 - 核激发。

Low-spin particle/hole-core excitations in $^{41,47,49}$Ca isotopes studied by cold-neutron capture reactions

论文作者

Bottoni, S., Cieplicka-Oryńczak, N., Leoni, S., Fornal, B., Colò, G., Bortignon, P. F., Bocchi, G., Bazzacco, D., Benzoni, G., Blanc, A., Bracco, A., Ceruti, S., Crespi, F. C. L., de France, G., Gamba, E. R., Iskra, Ł. W., Jentschel, M., Köster, U., Michelagnoli, C., Million, B., Mengoni, D., Mutti, P., Niu, Y., Porzio, C., Simpson, G., Soldner, T., Szpak, B., Türler, A., Ur, C. A., Urban, W.

论文摘要

我们介绍了有关单价粒子$^{41} $ CA和$^{49} $ CA的结构的最新结果,以及单价孔$^{47} $ ca,nuclei。利息的同位素是通过冷内部捕获反应$^{40} $ ca(n,$γ$),$^{48} $ ca(n,$γ$)和$^{46} $ ca(n,$γ$)。这些实验是在Exill活动中在Laue-Langevin研究所进行的,该活动采用了大量的HPGE探测器。这些核的$γ$衰减和水平方案通过$γ$ -Ray的重合关系研究,导致在$^{41} $ ca,$^{47} $ CA和$^{49} $ CA中识别41、10和6个新的过渡。提取了每个状态的$γ$衰减的分支比率和强度,并进行了$γ$ -Ray的角相关性,以建立许多过渡多极性和混合比,从而有助于状态的旋转分配。基于Skyrme SKX Hamiltonian,讨论了实验发现以及使用混合构型混合模型执行的显微镜,自一致的超越场计算。 The latter suggests that a fraction of the low-spin states of the $^{41}$Ca, $^{49}$Ca, and $^{47}$Ca nuclei is characterized by the coexistence of either 2p-1h and 1p-2h excitations, or couplings between single-particle/hole degrees of freedom and collective vibrations (phonons) of the doubly-magic "core".

We present recent results on the structure of the one-valence-particle $^{41}$Ca and $^{49}$Ca, and one-valence-hole $^{47}$Ca, nuclei. The isotopes of interest were populated via the cold-neutron capture reactions $^{40}$Ca(n,$γ$), $^{48}$Ca(n,$γ$) and $^{46}$Ca(n,$γ$), respectively. The experiments were performed at the Institut Laue-Langevin, within the EXILL campaign, which employed a large array of HPGe detectors. The $γ$ decay and level schemes of these nuclei were investigated by $γ$-ray coincidence relationships, leading to the identification of 41, 10, and 6 new transitions in $^{41}$Ca, $^{47}$Ca, and $^{49}$Ca, respectively. Branching ratios and intensities were extracted for the $γ$ decay from each state, and $γ$-ray angular correlations were performed to establish a number of transition multipolarities and mixing ratios, thus helping in the spin assignment of the states. The experimental findings are discussed along with microscopic, self-consistent beyond-mean-field calculations performed with the Hybrid Configuration Mixing model, based on a Skyrme SkX Hamiltonian. The latter suggests that a fraction of the low-spin states of the $^{41}$Ca, $^{49}$Ca, and $^{47}$Ca nuclei is characterized by the coexistence of either 2p-1h and 1p-2h excitations, or couplings between single-particle/hole degrees of freedom and collective vibrations (phonons) of the doubly-magic "core".

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