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Medium-Mass Nuclei from Chiral Nucleon-Nucleon Interactions

机译:来自手性核子-核子相互作用的中等质量核子

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摘要

We compute the binding energies, radii, and densities for selected medium-mass nuclei within coupled-cluster theory and employ a bare chiral nucleon-nucleon interaction at next-to-next-to-next-to-leading order. We find rather well-converged results in model spaces consisting of 15 oscillator shells, and the doubly magic nuclei ~(40)Ca, ~(48)Ca, and the exotic ~(48)Ni are underbound by about 1 MeV per nucleon within the coupled-cluster singles-doubles approximation. The binding-energy difference between the mirror nuclei ~(48)Ca and ~(48)Ni is close to theoretical mass table evaluations. Our computation of the one-body density matrices and the corresponding natural orbitals and occupation numbers provides a first step to a microscopic foundation of the nuclear shell model.
机译:我们计算耦合簇理论中选定的中等质量核的结合能,半径和密度,并以次要,次要,次要,领先的顺序使用裸手性核子-核子相互作用。我们在由15个振荡器壳组成的模型空间中找到了相当好的收敛结果,并且双魔核〜(40)Ca,〜(48)Ca和奇异的〜(48)Ni在每个核子内约不足1 MeV的下界耦合群集单打-近似。镜核〜(48)Ca和〜(48)Ni之间的结合能差接近理论质量表评估。我们对单体密度矩阵以及相应的自然轨道和占有数的计算为核壳模型的微观基础提供了第一步。

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