English

Tensor correlation in 4He and its Effect on the doublet splitting in 5He

Nuclear Theory 2009-11-10 v2

Abstract

We investigate the role of tensor correlation on the structures of \nuc{4}{He} and its effect on the doublet splitting in \nuc{5}{He}. We perform a configuration mixing calculation in the shell model type bases to represent the tensor correlation for 4^4He. It is found that our model describes the characteristics of the tensor correlation, which is represented by an admixture of the 0s1/20s_{1/2} configuration with a spatially modified 0p1/20p_{1/2} orbit. For 5^5He, we solve a coupled OCM equation for an extended 4^4He+nn model, while taking into account the tensor correlation in the 4^4He cluster. It is shown that the tensor correlation produces the Pauli blocking, in particular, for the Jπ=1/2J^\pi={1/2}^- state, and its effect causes about half of the p-wave doublet splitting in 5^5He. This indicates that the strength of the effective spin-orbit interaction should be reduced by about half from the conventional one. We obtain a reliable 4^4He-nn interaction, including the tensor correlation, which further improves the behavior of the dd- and ff-wave phase shifts in the 4^4He+nn system.

Cite

@article{arxiv.nucl-th/0411086,
  title  = {Tensor correlation in 4He and its Effect on the doublet splitting in 5He},
  author = {Takayuki Myo and Kiyoshi Kato and Kiyomi Ikeda},
  journal= {arXiv preprint arXiv:nucl-th/0411086},
  year   = {2009}
}

Comments

21 pages, 9 figures, To be published in Progress of Theoretical Physics

R2 v1 2026-07-22T18:32:57.801Z