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Investigations of the nuclear properties of 124Te and 154Gd using a dual-parameter energy-time spectrometer.

机译:使用双参数能量时间光谱仪研究124Te和154Gd的核性质。

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摘要

Two large volume Ge(Li) detectors and a plastic scintillation counter incorporated in a dual-parameter energy-time spectrometer are used to measure gamma-gamma coincidences following the beta decay of 124Sb and 154Eu. Such an assembly of the detectors also allowed the lifetime of the first excited state of 154Gd to be determined.;The apparent vibrational shape of 124Te and the deformation mode of 154Gd are investigated in light of the experimental results concerning their positive parity states. Negative parity states are also considered in terms of Coriolis coupling acting between three octupole bands in the 154Gd nucleus. The calculated electric dipole transition probabilities show good agreement with the experimental values.;Comparisons are made with the predictions of current nuclear models. In particular the application of the group theoretical symmetries of the interacting boson approximation are discussed. The calculations are carried out using the program package PHINT for determining the energy levels, in conduction with FBEM for evaluating the transition rates. In case of 154Gd the consequences of using the hybrid parameters, resulting from proton subshell closure at Z=64 are considered. Earlier nuclear models applied to both nuclei are discussed and compared with the present nuclear predictions.;A 12 % efficient Ge(Li) detector, an intrinsic Ge detector and a Compton suppression system have been employed in the measurement of gamma-ray energies and relative intensities, allowing the log ft values, multipolarities, spins/ parities and transition probabilities to be deduced for the two medium mass isotopes 124Te and 154Gd. Consequently following the coincidence measurements, the energy level schemes for both nuclei are built up incorporating several new energy levels and transitions; evidence is also found regarding levels which had been tentatively reported earlier, and are now considered as confirmed from the coincidence data.
机译:在124Sb和154Eu的β衰变之后,两个参量大的Ge(Li)检测器和一个包含在双参数能量时间光谱仪中的塑料闪烁计数器被用于测量γ-γ重合。探测器的这种组装还使得可以确定154Gd的第一激发态的寿命。根据有关其正校验状态的实验结果,研究了124Te的表观振动形状和154Gd的变形模式。负奇偶状态也被认为是作用于154Gd核中三个八极带之间的科里奥利耦合。计算出的电偶极子跃迁概率与实验值吻合良好;与现有核模型的预测结果进行了比较。特别是讨论了相互作用玻色子逼近的群理论对称性的应用。使用程序包PHINT来确定能级,并与FBEM一起使用,以评估过渡速率来进行计算。在154Gd的情况下,考虑使用混合参数的后果,这是由于Z = 64处的质子子壳闭合所致。讨论了适用于两个原子核的较早的核模型,并将其与当前的核预测进行了比较。;在伽玛射线能量和相对能量的测量中采用了效率为12%的Ge(Li)探测器,本征Ge探测器和Compton抑制系统。强度,允许推导两个中等质量同位素124Te和154Gd的log ft值,多极性,自旋/奇偶性和跃迁几率。因此,在进行重合测量之后,两个核的能级方案都建立了,并结合了几个新的能级和跃迁。还发现了有关先前尝试性报道的水平的证据,现在认为这些数据已从符合性数据中得到证实。

著录项

  • 作者

    Mardirosian, George.;

  • 作者单位

    University of London, Bedford College (United Kingdom).;

  • 授予单位 University of London, Bedford College (United Kingdom).;
  • 学科 Nuclear physics and radiation.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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