English

Direct probing of the cluster structure in ${}^{12}$Be via $\alpha$-knockout reaction

Nuclear Theory 2019-06-19 v3

Abstract

Background: Recent theoretical and experimental researches using proton-induced α\alpha-knockout reactions provide direct manifestation of α\alpha-cluster formation in nuclei. In recent and future experiments, α\alpha-knockout data are available for neutron-rich beryllium isotopes. In 12^{12}Be , rich phenomena are induced by the formation of α\alpha-clusters surrounded by neutrons, for instance, breaking of the neutron magic number N=8N=8. Purpose: Our objective is to provide direct probing of the α\alpha-cluster formation in the 12^{12}Be target through associating the structure information obtained by a microscopic theory with the experimental observables of α\alpha-knockout reactions. Method: We formulate a new wave function of the Tohsaki-Horiuchi-Schuck-R{\"o}pke (THSR) type for the structure calculation of 12{}^{12}Be nucleus and integrate it with the distorted wave impulse approximation framework for the α\alpha-knockout reaction calculation of 12^{12}Be(p,pα)8(p,p\alpha)^{8}He. Results: We reproduce the low-lying spectrum of the 12^{12}Be nucleus using the THSR wave function and discuss the cluster structure of the ground state. Based on the microscopic wave function, the optical potentials and α\alpha-cluster wave function are determined and utilized in the calculation of 12{}^{12}Be(p,pαp,p\alpha)8{}^{8}He reaction at 250 MeV. The possibility of probing the clustering state of 12^{12}Be through this reaction is demonstrated by analysis of the triple differential cross sections that are sensitively dependent on the α\alpha-cluster amplitude at the nuclear surface. Conclusions: This study provides a feasible approach to validate directly the theoretical predictions of clustering features in the 12^{12}Be nucleus through the α\alpha-knockout reaction.

Keywords

Cite

@article{arxiv.1902.03117,
  title  = {Direct probing of the cluster structure in ${}^{12}$Be via $\alpha$-knockout reaction},
  author = {Mengjiao Lyu and Kazuki Yoshida and Yoshiko Kanada-En'yo and Kazuyuki Ogata},
  journal= {arXiv preprint arXiv:1902.03117},
  year   = {2019}
}

Comments

13 pages, 8 figures