Bound clusters on top of doubly magic nuclei
Abstract
An effective particle equation is derived for cases where an particle is formed on top of a doubly magic nucleus. As an example, we consider Po with the on top of the Pb core. We will consider the core nucleus infinitely heavy, so that the 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 (-like) correlations that are of relevance when the matter density becomes low. In the region where the -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 Po are presented. Such preformed cluster states are only hardly described by shell model calculations. Reasons for different physics behavior of an -like cluster with respect to a deuteron-like cluster are discussed.
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