English

New trial wave function for nuclear cluster structure of nuclei

Nuclear Theory 2018-06-06 v2

Abstract

A new trial wave function is proposed for nuclear physics, in which an exact solution to the long-standing center-of-mass problem is given. In the new approach, the widths of the single-nucleon Gaussian wave packets and the widths of the relative Gaussian wave functions describing correlations of nucleons or clusters are treated as variables in the explicit intrinsic wave function of the nuclear system. As an example, this new wave function was applied to study the typical 20Ne{^{20}{\rm Ne}} (α\alpha+16O{{^{16}}{\rm O}}) cluster system. By removing exactly the spurious center-of-mass effect in a very simple way, the energy curve of 20Ne{^{20}{\rm Ne}} was obtained by the variational calculations with the width of α\alpha cluster, the width of 16O{{^{16}}{\rm O}} cluster, and the size parameter of the nucleus. They are considered as the three crucial variational variables in describing the 20Ne{^{20}{\rm Ne}} (α\alpha+16O{{^{16}}{\rm O}}) cluster system. This shows that the new wave function can be a very interesting new tool for studying many-body and cluster effects in nuclear physics.

Keywords

Cite

@article{arxiv.1711.07146,
  title  = {New trial wave function for nuclear cluster structure of nuclei},
  author = {Bo Zhou},
  journal= {arXiv preprint arXiv:1711.07146},
  year   = {2018}
}

Comments

10 pages, 2 figures

R2 v1 2026-06-22T22:51:03.526Z