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Exotic rotation in weakly deformed and triaxial nuclei.

机译:弱变形和三轴核中的外来旋转。

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摘要

Antimagnetic rotation in weakly deformed nuclei 100,101Pd, and chiral rotation in triaxial nuclei 135,136Nd have been investigated by means of gamma-ray spectroscopic measurements. These two modes of rotation are quite different from "standard" rotational motion observed in well deformed nuclei. In these new modes, the total angular momentum either originates purely from a few particles in high-j orbitals, or these orbitals couple to collective motion of a triaxial core. Two cascades of four "rotational-band-like" transitions were observed in 100Pd and 101Pd, respectively, and have been proposed as corresponding to antimagnetic rotation, based on the observed spectroscopic properties and a comparison with calculations in the configuration-dependent cranking Nilsson-Strutinsky formalism. Two DeltaI = 1 bands with close excitation energies and the same parity were observed in 135Nd. These bands are directly linked by DeltaI = 1 and DeltaI = 2 transitions. The chiral nature of these two bands is confirmed by comparison with three-dimensional tilted axis cranking calculations. This is the first observation of a three-quasiparticle chiral structure and establishes the primarily geometric nature of this phenomenon. Although there are no chiral partner bands observed in even-even nucleus 136Nd from our data, TAC calculations indeed give chiral solutions related to several DeltaI = 1 bands in the nucleus 136Nd.
机译:通过伽马射线光谱测量研究了弱变形原子核100,101Pd中的反磁性旋转和三轴原子核135,136Nd中的手性旋转。这两种旋转模式与在变形良好的原子核中观察到的“标准”旋转运动有很大不同。在这些新模式中,总角动量要么完全源自高j轨道中的几个粒子,要么这些轨道耦合到三轴核的集体运动。分别在100Pd和101Pd中观察到两个“旋转带状”跃迁的两个级联,并根据观察到的光谱特性和与配置相关的曲柄Nilsson- Strutinsky形式主义。在135Nd中观察到两个具有接近激发能且具有相同奇偶性的DeltaI = 1波段。这些频带通过DeltaI = 1和DeltaI = 2跃迁直接链接。通过与三维倾斜轴启动计算进行比较,可以确认这两个谱带的手性。这是对三准粒子手性结构的首次观察,并确定了该现象的主要几何性质。尽管从我们的数据中没有在偶数偶数原子核136Nd中观察到手性伴侣带,但TAC计算的确提供了与原子核136Nd中几个DeltaI = 1带相关的手性解。

著录项

  • 作者

    Zhu, Shaofei.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Physics Nuclear.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 159 p.
  • 总页数 159
  • 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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