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Dipole response of neutron-rich Sn isotopes

机译:富中子的Sn同位素的偶极响应

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摘要

The neutron-rich isotopes Sn129-133 were studied in a Coulomb excitation experiment at about 500 AMeV using the FRS-LAND setup at GSI. From the exclusive measurement of all projectile-like particles following the excitation and decay of the projectile in a high-Z target, the energy differential cross section can be extracted. At these beam energies dipole transitions are dominating, and within the semi-classical approach the Coulomb excitation cross sections can be transformed into photoabsorption cross sections. In contrast to stable Sn nuclei, a substantial fraction of dipole strength is observed at energies below the giant dipole resonance (GDR). For 130 Sn and 112 Sn this strength is located in a peak-like structure around 10 MeV excitation energy and exhibits a few percent of the Thomas-Reiche Kuhn (TRK) sum-rule strength. Several calculations predict the appearance of dipole strength at low excitation energies in neutron-rich nuclei. This low-lying strength is often referred to as pygmy dipole resonance (PDR) and, in a macroscopic picture, is discussed in terms of a collective oscillation of excess neutrons versus the core nucleons. Moreover, a sharp rise is observed at the neutron separation threshold around 5 MeV for the odd isotopes. A possible contribution of 'threshold strength', which can be described within the direct-breakup model is discussed. The results for the neutron-rich Sn isotopes are confronted with results on stable nuclei investigated in experiments using real photons.
机译:使用GSI的FRS-LAND装置,在约500 AMeV的库仑激发实验中研究了富中子同位素Sn129-133。通过在高Z目标中对弹丸的激发和衰减进行跟踪后,对所有弹丸状颗粒进行排他性测量,可以提取出能量微分截面。在这些束能量下,偶极跃迁占主导地位,在半经典方法中,库仑激发截面可以转换为光吸收截面。与稳定的Sn核相反,在低于巨偶极子共振(GDR)的能量处观察到相当大一部分的偶极子强度。对于130 Sn和112 Sn,该强度位于10 MeV激发能附近的峰状结构中,并表现出Thomas-Reiche Kuhn(TRK)总规则强度的百分之几。多项计算预测,在富中子核中低激发能量下偶极子强度会出现。这种低洼的强度通常被称为侏儒偶极子共振(PDR),在宏观上,是根据中子相对于核心核子的集体振荡来讨论的。此外,对于奇数同位素,在5 MeV附近的中子分离阈值处观察到急剧上升。讨论了“阈值强度”的可能贡献,它可以在直接分解模型中描述。富中子的Sn同位素的结果与使用真实光子的实验中研究的稳定核的结果相对。

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