English

Allowed Gamow-Teller Excitations from the Ground State of 14N

Nuclear Theory 2009-11-07 v1

Abstract

Motivated by the proposed experiment 14N(d,2He)14C^{14}N(d,{^2He})^{14}C, we study the final states which can be reached via the allowed Gamow-Teller mechanism. Much emphasis has been given in the past to the fact that the transition matrix element from the Jπ=1+T=0J^{\pi}=1^+ T=0 ground state of 14N^{14}N to the Jπ=0+T=1J^{\pi}=0^+ T=1 ground state of 14C^{14}C is very close to zero, despite the fact that all the quantum numbers are right for an allowed transition. We discuss this problem, but, in particular, focus on the excitations to final states with angular momenta 1+1^+ and 2+2^+. We note that the summed strength to the Jπ=2+T=1J^{\pi}=2^+ T=1 states, calculated with a wide variety of interactions, is significantly larger than that to the Jπ=1+T=1J^{\pi}=1^+ T=1 final states.

Keywords

Cite

@article{arxiv.nucl-th/0210056,
  title  = {Allowed Gamow-Teller Excitations from the Ground State of 14N},
  author = {S. Aroua and P. Navratil and L. Zamick and M. S. Fayache and B. R. Barrett and J. P. Vary and N. Smirnova and K. Heyde},
  journal= {arXiv preprint arXiv:nucl-th/0210056},
  year   = {2009}
}

Comments

Submitted to Phys. Rev. C