论文标题
探测15C的四极转变强度通过Deuteron非弹性散射
Probing the quadrupole transition strength of 15C via deuteron inelastic scattering
论文作者
论文摘要
使用15C的第一个激发态对15C和非弹性散射反应进行了deuteron弹性散射,并使用反向运动学的15C放射性束进行了研究。使用Helios测量散射的杜特隆。使用光学模型分析了弹性散射差分截面。物质变形长度ΔD= 1.04(11)FM已从非弹性散射的差分截面提取到第一个激发态。中子和质子矩阵元件MN/MP = 3.6(4)的比率已从该四极杆过渡确定。确定并讨论了15C的中子有效电荷和核心极化参数。还将AB-Initio无核配置相互作用计算的结果与实验观察结果进行了比较。与其他富含中子的碳同位素的解释相一致,该结果支持15C中价中子的中核去耦效应。
Deuteron elastic scattering from 15C and inelastic scattering reactions to the first excited state of 15C were studied using a radioactive beam of 15C in inverse kinematics. The scattered deuterons were measured using HELIOS. The elastic scattering differential cross sections were analyzed using the optical model. A matter deformation length δd = 1.04(11) fm has been extracted from the differential cross sections of inelastic scattering to the first excited state. The ratio of neutron and proton matrix elements Mn/Mp = 3.6(4) has been determined from this quadrupole transition. Neutron effective charges and core-polarization parameters of 15C were determined and discussed. Results from ab-initio no-core configuration interaction calculations were also compared with the experimental observations. This result supports a moderate core decoupling effect of the valence neutron in 15C similarly to its isotone 17O, in line with the interpretation of other neutron-rich carbon isotopes.