English

Neutron Transfer Reactions for Deformed Nuclei Using Sturmian Basis

Nuclear Theory 2007-06-15 v1

Abstract

We study the spin-parity distribution P(Jπ^{\pi},E) of 156^{156}Gd excited states above the neutron separation energy that are expected to be populated via the neutron pickup reaction 157^{157}Gd(3^{3}He,4^{4}He)156^{156}Gd. In general, modeling of the spin-parity distribution is important for the applicability of the surrogate reaction technique as a method of deducing reaction cross sections. We model excited states in 156^{156}Gd as rotational states built on intrinsic states consisting of a hole in the core where the hole represents neutron removal form a deformed single particle state. The reaction cross section to each excited state is calculated using standard reaction code that uses spherical reaction form-factor input. The spectroscopic factor associated with each form-factor is the expansion coefficient of the deformed neutron state in a spherical Sturmian basis consisting of the spherical reaction form-factors.

Keywords

Cite

@article{arxiv.0706.2002,
  title  = {Neutron Transfer Reactions for Deformed Nuclei Using Sturmian Basis},
  author = {V. G. Gueorguiev and P. D. Kunz and J. E. Escher and F. S. Dietrich},
  journal= {arXiv preprint arXiv:0706.2002},
  year   = {2007}
}
R2 v1 2026-06-21T08:38:14.803Z