Physics Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.
Phys Rev Lett. 2012 Jul 20;109(3):032502. doi: 10.1103/PhysRevLett.109.032502. Epub 2012 Jul 17.
We employ interactions from chiral effective field theory and compute the binding energies and low-lying excitations of calcium isotopes with the coupled-cluster method. Effects of three-nucleon forces are included phenomenologically as in-medium two-nucleon interactions, and the coupling to the particle continuum is taken into account using a Berggren basis. The computed ground-state energies and the low-lying J(π) = 2+ states for the isotopes (42,48,50,52)Ca are in good agreement with data, and we predict the excitation energy of the first J(π) = 2+ state in (54)Ca at 1.9 MeV, displaying only a weak subshell closure. In the odd-mass nuclei (53,55,61)Ca we find that the positive parity states deviate strongly from the naive shell model.
我们利用手征有效场论中的相互作用,并采用耦合簇方法计算了钙同位素的束缚能和低激发态。三核力的影响通过中能两核相互作用唯象地包含在内,而与粒子连续区的耦合则使用 Berggren 基来考虑。我们计算的基态能量和低激发态 J(π) = 2+ 对于同位素 (42,48,50,52)Ca 的状态与数据吻合良好,并且我们预测了 (54)Ca 中第一个 J(π) = 2+ 激发态的激发能为 1.9 MeV,仅显示出微弱的亚壳闭合。在奇质量核 (53,55,61)Ca 中,我们发现正宇称态强烈偏离了简单的壳模型。