English

Analytic continuation of single-particle resonance energy and wave function in relativistic mean field theory

Nuclear Theory 2009-11-10 v1

Abstract

Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the coupling constant (ACCC) method within the framework of the self-consistent relativistic mean field (RMF) theory. Taking the neutron resonant state ν1g9/2\nu 1g_{9/2} in 60^{60}Ca as an example, we examine the analyticity of the eigenvalue and eigenfunction for the Dirac equation with respect to the coupling constant by means of a \pade\pade approximant of the second kind. The RMF-ACCC approach is then applied to 122^{122}Zr and, for the first time, this approach is employed to investigate both the energies, widths and wave functions for l0l\ne 0 resonant states close to the continuum threshold. Predictions are also compared with corresponding results obtained from the scattering phase shift method.

Keywords

Cite

@article{arxiv.nucl-th/0403013,
  title  = {Analytic continuation of single-particle resonance energy and wave function in relativistic mean field theory},
  author = {S. S. Zhang and J. Meng and S. G. Zhou and G. C. Hillhouse},
  journal= {arXiv preprint arXiv:nucl-th/0403013},
  year   = {2009}
}

Comments

19 pages, 9 figures