利用 SOLARIS 通过 $^{32}$Si($d$,$p$)$^{33}$Si 反应探究核自旋-轨道劈裂的演化
核实验
2024-04-09 v1
摘要
利用长寿命放射性同位素Si束流,通过逆运动学下的单中子添加(,)反应,推导出了Si处中子1轨道间的自旋-轨道劈裂。反应产物由国家超导回旋加速器实验室再加速束流设施中新部署的SOLARIS谱仪进行分析。测量结果与结合了现代跨壳相互作用的壳模型计算吻合较好,但与基于相对论平均场理论的质子密度耗尽预测相矛盾。利用现有及以往数据,对、19和21的同中子素链中中子1壳轨道的演化进行了系统研究。在每种情况下,随着各轨道接近零束缚,均观测到-轨道间距的平滑减小,这表明有限核势强烈影响了该区域核结构的演化。
引用
@article{arxiv.2404.05434,
title = {Evolution of the nuclear spin-orbit splitting explored via the $^{32}$Si($d$,$p$)$^{33}$Si reaction using SOLARIS},
author = {J. Chen and B. P. Kay and C. R. Hoffman and T. L. Tang and I. A. Tolstukhin and D. Bazin and R. S. Lubna and Y. Ayyad and S. Beceiro-Novo and B. J. Coombes and S. J. Freeman and L. P. Gaffney and R. Garg and H. Jayatissa and A. N. Kuchera and P. MacGregor and A. J. Mitchell and W. Mittig and B. Monteagudo and A. Munoz-Ramos and C. Müller-Gatermann and F. Recchia and N. Rijal and C. Santamaria and M. Z. Serikow and D. K. Sharp and J. Smith and J. K. Stecenko and G. L. Wilson and A. H. Wuosmaa and C. X. Yuan and J. C. Zamora and Y. N. Zhang},
journal= {arXiv preprint arXiv:2404.05434},
year = {2024}
}
备注
10 pages, 5 figures