English

Structure of $^{38}$Cl and the quest for a comprehensive shell model interaction

Nuclear Experiment 2019-10-01 v3 Nuclear Theory

Abstract

The higher-spin structure of 38^{38}Cl (N=21N = 21) was investigated following the 26^{26}Mg(14^{14}C, pnpn) reaction at 30 and 37 MeV beam energies. The outgoing protons were detected in an EΔEE- \Delta E Si telescope placed at 0^\circ close to the target with a Ta beam stopper between the target and telescope. Multiple γ\gamma rays were detected in time coincidence with the protons using an enhanced version of the FSU γ\gamma detection array. The level scheme was extended up to 8420 keV with a likely spin of 10 \hbar. A new multishell interaction was developed guided by the experimental information. This FSU interaction was built by fitting to the energies of 270 experimental states from 13^{13}C to 51^{51}Ti. Calculations using the FSU interaction reproduce observed properties of 38^{38}Cl rather well, including the spectroscopic factors. The interaction has been successfully used to interpret the 1p1h1p1h and 2p2h2p2h configurations in some nearby nuclei as well.

Keywords

Cite

@article{arxiv.1905.10646,
  title  = {Structure of $^{38}$Cl and the quest for a comprehensive shell model interaction},
  author = {R. S. Lubna and K. Kravvaris and S. L. Tabor and Vandana Tripathi and A. Volya and E. Rubino and J. M. Allmond and B. Abromeit and L. T. Baby and T. C. Hensley},
  journal= {arXiv preprint arXiv:1905.10646},
  year   = {2019}
}

Comments

Published in https://doi.org/10.1103/PhysRevC.100.034308

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