论文标题

$^{30} $ mg的结构通过梁$γ$ -Ray光谱探索

Structure of $^{30}$Mg explored via in-beam $γ$-ray spectroscopy

论文作者

Kitamura, N., Wimmer, K., Shimizu, N., Bader, V. M., Bancroft, C., Barofsky, D., Baugher, T., Bazin, D., Berryman, J. S., Bildstein, V., Gade, A., Lunderberg, N. Imai T. Kröll C. Langer J. Lloyd E., Redpath, G. Perdikakis F. Recchia T., Saenz, S., Smalley, D., Stroberg, S. R., Tostevin, J. A., Tsunoda, N., Utsuno, Y., Weisshaar, D., Westerberg, A.

论文摘要

背景:在“反转岛”中,中子丰富的$ SD $ -SHELL NUCLEI的基态显示出$ FP $ shell的入侵构型的强大混合物。位于反转岛边界的核$^{30} $ mg,是一个基石,可以随着一个接近该区域而跟踪结构演化的基石。目的:$^{30} $ mg中激发状态的自旋 - 统一分配,尤其是负值水平,尚未确定。在目前的工作中,$^{30} $ mg的核结构是通过束内$γ$ -RAY光谱的研究,主要集中于企业的旋转式确定。方法:$^{31} $ mg,$^{32} $ mg,$^{34} $ si和$^{35} $的高强度稀有异位梁梁,$^{34} $ si bemed be tabard tabard be诱导核子去除反应的目标是$^{30} $ mg。 $γ$射线是由最先进的$γ$ ray跟踪阵列Gretina检测到的。对于直接的单中子去除反应,推导了最终状态独家横截面和平行动量分布。利用来自不同弹丸的多核去除反应以获取互补信息。结果:借助平行动量分布,构建了具有修订后的旋转率分配的更新水平方案。还推导了与每个状态相关的光谱因素。结论:结果使用两种不同的有效相互作用面对大规模的壳模型计算,这表明与当前级别方案非常一致。但是,光谱因素的明显差异表明,向反转岛的过渡完全描述仍然是理论模型的挑战。

Background: In the "island of inversion", ground states of neutron-rich $sd$-shell nuclei exhibit strong admixtures of intruder configurations from the $fp$ shell. The nucleus $^{30}$Mg, located at the boundary of the island of inversion, serves as a cornerstone to track the structural evolution as one approaches this region. Purpose: Spin-parity assignments for excited states in $^{30}$Mg, especially negative-parity levels, have yet to be established. In the present work, the nuclear structure of $^{30}$Mg was investigated by in-beam $γ$-ray spectroscopy mainly focusing on firm spin-parity determinations. Method: High-intensity rare-isotope beams of $^{31}$Mg, $^{32}$Mg, $^{34}$Si, and $^{35}$P bombarded a Be target to induce nucleon removal reactions populating states in $^{30}$Mg. $γ$ rays were detected by the state-of-the-art $γ$-ray tracking array GRETINA. For the direct one-neutron removal reaction, final-state exclusive cross sections and parallel momentum distributions were deduced. Multi-nucleon removal reactions from different projectiles were exploited to gain complementary information. Results: With the aid of the parallel momentum distributions, an updated level scheme with revised spin-parity assignments was constructed. Spectroscopic factors associated with each state were also deduced. Conclusions: Results were confronted with large-scale shell-model calculations using two different effective interactions, showing excellent agreement with the present level scheme. However, a marked difference in the spectroscopic factors indicates that the full delineation of the transition into the island of inversion remains a challenge for theoretical models.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源