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首页> 外文期刊>Physical Review C: Nuclear Physics >Testing Skyrme energy-density functionals with the quasiparticle random-phase approximation in low-lying vibrational states of rare-earth nuclei
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Testing Skyrme energy-density functionals with the quasiparticle random-phase approximation in low-lying vibrational states of rare-earth nuclei

机译:在稀土原子核的低振动状态下用准粒子随机相近似测试Skyrme能量密度泛函

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摘要

Although nuclear energy-density functionals are determined primarily by fitting to ground-state properties, they are often applied in nuclear astrophysics to excited states, usually through the quasiparticle random-phase approximation (QRPA). Here we test the Skyrme functionals SkM* and SLy4 along with the self-consistent QRPA by calculating properties of low-lying vibrational states in a large number of well-deformed even-even rare-earth nuclei. We reproduce trends in energies and transition probabilities associated with γ-vibrational states, but our results are not perfect and indicate the presence of multiparticle-hole correlations that are not included in the QRPA. The Skyrme functional SkM* performs noticeably better than SLy4. In a few nuclei, changes in the treatment of the pairing energy functional have a significant effect. The QRPA is less successful with “β-vibrational” states than with the γ-vibrational states.
机译:尽管核能密度函数主要是通过拟合基态特性来确定的,但它们通常在核天体物理学中应用于激发态,通常是通过准粒子随机相位近似(QRPA)来实现的。在这里,我们通过计算大量变形良好的偶数甚至偶数稀土核的低振动态的特性,来测试Skyrme功能SkM *和SLy4以及自洽QRPA。我们重现了与γ振动状态相关的能量和跃迁概率趋势,但我们的结果并不完美,表明存在QRPA中未包含的多粒子-孔相关性。 Skyrme功能性SkM *的性能明显优于SLy4。在少数原子核中,配对能量官能团的治疗方法改变具有重大影响。 QRPA在“β振动”状态下不如在γ振动状态下成功。

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