English

High-precision mass measurements for the isobaric multiplet mass equation at A = 52

Nuclear Experiment 2017-05-24 v1

Abstract

Masses of 52^{52}Co, 52^{52}Com^m, 52^{52}Fe, 52^{52}Fem^m, and 52^{52}Mn have been measured with the JYFLTRAP double Penning trap mass spectrometer. Of these, 52^{52}Co and 52^{52}Com^m have been experimentally determined for the first time and found to be more bound than predicted by extrapolations. The isobaric multiplet mass equation for the T=2T=2 quintet at A=52A=52 has been studied employing the new mass values. No significant breakdown (beyond the 3σ3\sigma level) of the quadratic form of the IMME was observed (χ2/n=2.4\chi^2/n=2.4). The cubic coefficient was 6.0(32) keV (χ2/n=1.1\chi^2/n=1.1). The excitation energies for the isomer and the T=2T=2 isobaric analogue state in 52^{52}Co have been determined to be 374(13) keV and 2922(13) keV, respectively. The QQ value for the proton decay from the 19/219/2^- isomer in 53^{53}Co has been determined with an unprecedented precision, Qp=1558.8(17)Q_{p} = 1558.8(17) keV. The proton separation energies of 52^{52}Co and 53^{53}Ni relevant for the astrophysical rapid proton capture process have been experimentally determined for the first time. \end{abstract}

Keywords

Cite

@article{arxiv.1701.04069,
  title  = {High-precision mass measurements for the isobaric multiplet mass equation at A = 52},
  author = {D. A. Nesterenko and A. Kankainen and L. Canete and M. Block and D. Cox and T. Eronen and C. Fahlander and U. Forsberg and J. Gerl and P. Golubev and J. Hakala and A. Jokinen and V. S. Kolhinen and J. Koponen and N. Lalović and Ch. Lorenz and I. D. Moore and P. Papadakis and J. Reinikainen and S. Rinta-Antila and D. Rudolph and L. G. Sarmiento and A. Voss and J. Äystö},
  journal= {arXiv preprint arXiv:1701.04069},
  year   = {2017}
}

Comments

12 pages, 13 figures, submitted to Phys. Rev. C (26.9.2016)