English

Bound clusters on top of doubly magic nuclei

Nuclear Theory 2014-09-17 v1

Abstract

An effective α\alpha particle equation is derived for cases where an α\alpha particle is formed on top of a doubly magic nucleus. As an example, we consider 212^{212}Po with the α\alpha on top of the 208^{208} Pb core. We will consider the core nucleus infinitely heavy, so that the α\alpha particle moves with respect to a fixed center, i.e., recoil effects are neglected. The fully quantal solution of the problem is discussed. The approach is inspired by the THSR (Tohsaki-Horiuchi-Schuck-R\"{o}pke) wave function concept that has been successfully applied to light nuclei. Shell model calculations are improved by including four-particle (α\alpha-like) correlations that are of relevance when the matter density becomes low. In the region where the α\alpha-like cluster penetrates the core nucleus, the intrinsic bound state wave function transforms at a critical density into an unbound four-nucleon shell model state. Exploratory calculations for 212^{212}Po are presented. Such preformed cluster states are only hardly described by shell model calculations. Reasons for different physics behavior of an α\alpha-like cluster with respect to a deuteron-like cluster are discussed.

Keywords

Cite

@article{arxiv.1407.0510,
  title  = {Bound clusters on top of doubly magic nuclei},
  author = {G. Röpke and P. Schuck and Bo Zhou and Y. Funaki and H. Horiuchi and Zhongzhou Ren and A. Tohsaki and Chang Xu and T. Yamada},
  journal= {arXiv preprint arXiv:1407.0510},
  year   = {2014}
}

Comments

24 pages, 5 figures

R2 v1 2026-06-22T04:53:15.295Z