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Experimental investigations on the nuclear structure of the neutron-rich nuclides 44S and 20O.

机译:富中子核素44S和20O核结构的实验研究。

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摘要

Experimental results of two independent studies on the nuclear structure of the neutron-rich nuclei S4416 and O20 8 O are presented. A short introduction on the context of these studies within nuclear physics is given in chapter 1. Because of the fundamental differences between the experiments and analysis techniques the investigations have been separated in two chapters.;The investigation of 44S, extracted via the two-proton knockout reaction from 46Ar with intermediate beam energy, is presented in chapter 2. Four new excited states are identified, of which the first 4+ state presents evidence of deformation, as suggested by line-shape simulations of the detected gamma rays. This is also indicated by a shell-model calculation, where the deformation of the first 4 + state originates in a neutron particle-hole configuration which is fundamentally different from the "intruder"configuration producing the ground state deformation and from the configuration describing the relatively long-lived isomeric 0+ state. Consequently, not three coexisting shapes, rather three coexisting configurations are found in 44S, corresponding to zero, one and two neutron particle-hole excitations.;In chapter 3, results from the analysis of the 19O( d,p)20O reaction in inverse kinematics using the active gas target detector array ANASEN are presented. In order to study the location and fragmentation of the d3/2 orbital in 20O, a beam of the short-lived 19O was produced at the RESOLUT radioactive beam facility of the Florida State University. The ejected protons from the (d,p) reaction were measured with large solid angle coverage and for beam energies between 2.2 and 4.3 MeV/A. Data from the 17O(d,p)18O reaction was acquired to verify our experimental methods and analysis techniques.
机译:给出了两项关于富中子核S4416和O20 8 O的核结构的独立研究的实验结果。在第1章中对这些研究的背景作了简短介绍。由于实验和分析技术之间的根本差异,因此将研究分为两章。;通过两个质子提取的44S研究。在第2章中介绍了具有中间束能量的46Ar的敲除反应。确定了四个新的激发态,其中第一个4+态表现出变形的迹象,这是由检测到的伽马射线的线形模拟所暗示的。壳模型计算也表明了这一点,其中前4 +态的变形源自中子粒子-孔构型,该构型与产生基态形变的“入侵者”构型和描述相对基态的构型根本不同。长寿命异构体0+状态。因此,在44S中没有发现三种共存的形状,而是三种共存的构型,分别对应于零,一和两个中子粒子-空穴激发。第三章,通过反演19O(d,p)20O反应的分析结果提出了使用活性气体目标探测器阵列ANASEN的运动学。为了研究20O中d3 / 2轨道的位置和碎片化,在佛罗里达州立大学的RESOLUT放射性束设施中产生了寿命短的19O束。在较大的立体角覆盖范围内以及在2.2和4.3 MeV / A之间的束能量下,测量了从(d,p)反应中喷射出的质子。从17O(d,p)18O反应获得的数据证实了我们的实验方法和分析技术。

著录项

  • 作者

    Santiago-Gonzalez, Daniel.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Physics Radiation.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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