Toward a unified description of the one-neutron halo nuclei \(^{15}\)C and \(^{19}\)C from structure to reaction

IF 2.6 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR
Li-Yang Wang, Kaiyuan Zhang, Jia-Lin An, Shi-Sheng Zhang
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引用次数: 0

Abstract

To achieve a unified description of the one-neutron halo nuclei \(^{15}\)C and \(^{19}\)C from structural properties to reaction dynamics, we combine the microscopic, self-consistent deformed relativistic Hartree–Bogoliubov theory in the continuum (DRHBc) with the Glauber model. For \(^{15}\)C, the valence neutron orbital with dominant \(2s_{1/2}\) components supports the experimental ground-state spin-parity and halo formation. The halo nature of \(^{19}\)C is attributed to a prolate state with the valence neutron orbital also dominated by \(2s_{1/2}\) components. The neutron densities for the halo states of \(^{15}\)C and \(^{19}\)C are significantly more dilute than those for \(^{14,16,18}\)C. With the DRHBc calculated densities of the core nucleus and the wave functions of the valence neutron as inputs, the reaction cross sections (RCSs) of \(^{14\text {--}19}\)C bombarding a carbon target and the longitudinal momentum distributions of the core residues with one-neutron removal from \(^{15,17,19}\)C are calculated by the Glauber model. The results not only demonstrate a significant increase of RCS from \(^{14}\)C to \(^{15}\)C but also accurately reproduce the measured RCS for the \(^{19}\)C + \(^{12}\)C reaction. Compared to the \(^{16}\)C residue from the one-neutron removal of \(^{17}\)C, the longitudinal momentum distributions for \(^{14}\)C and \(^{18}\)C residues from \(^{15}\)C and \(^{19}\)C, respectively, are notably narrower and exhibit clear peak shapes, supporting the halo structure of \(^{15}\)C and \(^{19}\)C. These findings further validate the DRHBc + Glauber approach, following its successful applications to the halo nuclei \(^{31}\)Ne and \(^{37}\)Mg.

对单中子晕核\(^{15}\) C和\(^{19}\) C从结构到反应的统一描述
实现对单中子晕核的统一描述 \(^{15}\)C和 \(^{19}\)从结构性质到反应动力学,我们将微观的、自洽的变形相对论Hartree-Bogoliubov连续介质理论(DRHBc)与Glauber模型相结合。因为 \(^{15}\)C,优势价中子轨道 \(2s_{1/2}\) 组件支持实验基态自旋宇称和光晕形成。光晕的性质 \(^{19}\)C归为长态,价中子轨道也由 \(2s_{1/2}\) 组件。的光晕态的中子密度 \(^{15}\)C和 \(^{19}\)C的浓度明显低于 \(^{14,16,18}\)C.以DRHBc计算的核心核密度和价中子的波函数为输入,得到 \(^{14\text {--}19}\)C轰击碳靶及去除一个中子后堆芯残馀物的纵向动量分布 \(^{15,17,19}\)C由Glauber模型计算。结果不仅表明RCS显著增加 \(^{14}\)C to \(^{15}\)C还可以准确地再现测量的RCS为 \(^{19}\)C + \(^{12}\)C反应。相比之下 \(^{16}\)C残渣从一个中子去除 \(^{17}\)C,纵向动量分布 \(^{14}\)C和 \(^{18}\)C残基 \(^{15}\)C和 \(^{19}\)C,分别明显变窄,呈现清晰的峰形,支持 \(^{15}\)C和 \(^{19}\)C.这些发现进一步验证了DRHBc + Glauber方法在晕核上的成功应用 \(^{31}\)Ne和 \(^{37}\)Mg。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The European Physical Journal A
The European Physical Journal A 物理-物理:核物理
CiteScore
5.00
自引率
18.50%
发文量
216
审稿时长
3-8 weeks
期刊介绍: Hadron Physics Hadron Structure Hadron Spectroscopy Hadronic and Electroweak Interactions of Hadrons Nonperturbative Approaches to QCD Phenomenological Approaches to Hadron Physics Nuclear and Quark Matter Heavy-Ion Collisions Phase Diagram of the Strong Interaction Hard Probes Quark-Gluon Plasma and Hadronic Matter Relativistic Transport and Hydrodynamics Compact Stars Nuclear Physics Nuclear Structure and Reactions Few-Body Systems Radioactive Beams Electroweak Interactions Nuclear Astrophysics Article Categories Letters (Open Access) Regular Articles New Tools and Techniques Reviews.
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