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LEVEL DENSITY FROM REALISTIC NUCLEAR POTENTIALS

机译:现实核势的水平密度

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摘要

Nuclear level density of some nuclei is calculated using a realistic set of single particle states (sps). These states are derived from the parameterization of nuclear potentials that describe the observed sps over a large number of nuclei. This approach has the advantage that one can infer level density for nuclei that are inaccessible for a direct study, but are very important in astrophysical processes such as those close to the drip lines. Level densities at high excitation energies are very sensitive to the actual set of sps. The fact that the sps spectrum is finite has extraordinary consequences upon nuclear reaction yields due to the leveling-off of the level density at extremely high excitation energies wrongly attributed so far to other nuclear effects. Single-particle level density parameter a is extracted by fitting the calculated densities to the standard Bethe formula.
机译:使用实际的一组单粒子状态(sps)计算某些原子核的原子能级密度。这些状态源自描述了在大量核上观察到的sps的核势参数化。这种方法的优点是可以推断出无法直接研究的原子核的水平密度,但在天体物理过程(如靠近滴水线的过程)中非常重要。高激发能量下的能级密度对实际的sps非常敏感。由于迄今为止错误地归因于其他核效应的极高激发能使能级密度趋于平稳,因此sps频谱有限这一事实对核反应产率产生了非凡的影响。通过将计算出的密度与标准Bethe公式拟合,可以提取单粒子级密度参数a。

著录项

  • 来源
    《Romanian journal of physics》 |2006年第10期|p.859-866|共8页
  • 作者

    A. CALBOREANU;

  • 作者单位

    'Horia Hulubei' Institute of Physics and Nuclear Engineering, Bucharest, Romania;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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