English

Nuclear Structure of the even-even Argon isotopes with a focus on magnetic moments

Nuclear Theory 2009-06-30 v3

Abstract

We study the role of configuration mixing in the heavier even-even isotopes of Argon. We begin by limiting the configurations of the even-even Ar isotopes to (d3/22)π(d_{3/2}^2)_{\pi} (f7/2n)ν(f_{7/2}^n)_{\nu}. There, due to the particular location in this shell model space of 40^{40}Ar and 44^{44}Ar, we find that the spectra, B(E2)'s and magnetic moments of these two nuclei are identical. Any deviation from this equality is direct evidence of configuration mixing. In a larger shell model space there are significant differences between these two nuclei, with 44^{44}Ar being more collective. We also consider other even-even isotopes of Argon and study how their nuclear structure effects evolve with N. We compare in the full 0ω\hbar \omega space (sd)π(sd)_{\pi} (fp)ν(fp)_{\nu} the results of calculations with the WBT interaction and with the newer SDPF, denoted SDPF-U, interaction.

Keywords

Cite

@article{arxiv.0810.2996,
  title  = {Nuclear Structure of the even-even Argon isotopes with a focus on magnetic moments},
  author = {S. J. Q. Robinson and Y. Y. Sharon and L. Zamick},
  journal= {arXiv preprint arXiv:0810.2996},
  year   = {2009}
}