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Systematics of binding energies and radii based on realistic two-nucleon plus phenomenological three-nucleon interactions

机译:基于现实的两个核子加现象学的三个核子相互作用的结合能和半径的系统学

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We investigate the influence of phenomenological three-nucleon interactions on the systematics of ground-state energies and charge radii throughout the whole nuclear mass range from 4He to 208Pb. The three-nucleon interactions supplement unitarily transformed two-body interactions constructed within the unitary correlation operator method or the similarity renormalization group approach. To be able to address heavy nuclei as well, we treat the many-body problem in Hartree-Fock plus many-body perturbation theory, which is sufficient to assess the systematics of energies and radii, and limit ourselves to regularized three-body contact interactions. We show that even with such a simplistic three-nucleon interaction a simultaneous reproduction of the experimental ground-state energies and charge radii can be achieved, which is not possible with unitarily transformed two-body interactions alone.
机译:我们调查现象学三核子相互作用对整个核质量范围从4He到208Pb的基态能量和电荷半径系统的影响。三核相互作用补充了在单一相关算子方法或相似性重新归一化组方法中构造的单一变换的两体相互作用。为了也能处理重核,我们在Hartree-Fock和多体摄动理论中处理了多体问题,该理论足以评估能量和半径的系统,并将自己限制在正则化的三体接触相互作用中。我们表明,即使使用这种简单的三核子相互作用,也可以实现实验基态能量和电荷半径的同时复制,而单独进行整体转换的两体相互作用是不可能的。

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