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In-beam gamma-ray spectroscopy of Te-136 at relativistic energies

机译:TE-136在相对论能量的束型γ射线光谱

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摘要

The reduced transition probability B(E2; 0(1)(+) -> 2(1)(+)) to the first excited 2(+) state of the neutron-rich nucleus Te-136, with two protons and two neutrons outside the doubly magic Sn-132 core, was measured via Coulomb excitation at relativistic energies at the RIKEN Radioactive Isotope Beam Factory. A value of B(E2) = 0.191(26) e(2)b(2) was extracted from the measured inelastic scattering cross section on an Au target taking into account the contributions from both Coulomb and nuclear excitations. In addition, an upper limit for the transition strength to a 2(+) state of mixed-symmetry character in the excitation energy range of 1.5-2.2 MeV was determined and compared to the predictions of various theoretical calculations. Because of the high statistics gathered in the present experiment the error of the deduced B(E2) value is dominated by the systematic uncertainties involved in the analysis of Coulomb excitation experiments at beam energies around 150 MeV/u. Therefore, the latter are for the first time assessed in detail in the present work.
机译:减少的过渡概率B(E2; 0(1)(+) - > 2(1)(+))至中子核TE-136的第一个激发2(+)状态,有两个质子和两个中子在双重魔法SN-132核心之外,通过在Riken放射性同位素梁厂的相对论能量下通过库仑激发来衡量。从测量的非弹性散射横截面提取了B(E2)= 0.191(26)e(2)B(2)的值,以考虑到库仑和核激发的贡献。另外,确定在1.5-2.2mev的激发能量范围内的混合对称特征的2(+)状态的过渡强度的上限并与各种理论计算的预测进行比较。由于在本实验中收集的高统计数据,所推断的B(E2)值的误差是由射束能量分析的系统不确定性,其在梁能量下约为150 meV / u。因此,后者首次在本作工作中详细评估。

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  • 来源
    《Physical review, C》 |2019年第3期|共14页
  • 作者单位

    CSIC Inst Estruct Mat E-28006 Madrid Spain;

    CSIC Inst Estruct Mat E-28006 Madrid Spain;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Univ Seville Dept FAMN Apartado 1065 E-41080 Seville Spain;

    Osaka Univ Res Ctr Nucl Phys Ibaraki 5670047 Japan;

    Yokohama Natl Univ Grad Sch Educ Yokohama Kanagawa 2408501 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    CSIC Inst Estruct Mat E-28006 Madrid Spain;

    Univ Oslo Dept Phys NO-0316 Oslo Norway;

    Rikkyo Univ Dept Phys Toshima Ku 3-34-1 Nishi Ikebukuro Tokyo 1728501 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Univ Hong Kong Dept Phys Pokfulam Hong Kong Peoples R China;

    Univ Tokyo Dept Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1130033 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Univ Oslo Dept Phys NO-0316 Oslo Norway;

    CNRS IN2P3 Inst Phys Nucl Orsay F-91406 Orsay France;

    Univ Oslo Dept Phys NO-0316 Oslo Norway;

    Istanbul Univ Fac Sci Dept Phys TR-34134 Istanbul Turkey;

    Univ Hong Kong Dept Phys Pokfulam Hong Kong Peoples R China;

    Univ Hong Kong Dept Phys Pokfulam Hong Kong Peoples R China;

    Univ Tokyo Dept Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1130033 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Univ Tokyo Dept Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1130033 Japan;

    Kyoto Univ Fac Sci Dept Phys Kyoto 6068502 Japan;

    Univ Tokyo Dept Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1130033 Japan;

    Japan Atom Energy Agcy Adv Sci Res Ctr Tokai Ibaraki 3191195 Japan;

    Univ Tokyo Dept Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1130033 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    RIKEN Nishina Ctr 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Univ Oslo Dept Phys NO-0316 Oslo Norway;

    MTA Atomki POB 51 H-4001 Debrecen Hungary;

    Istanbul Univ Fac Sci Dept Phys TR-34134 Istanbul Turkey;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

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