English

Study of $\beta^+$/EC-decay properties of $sd$ shell nuclei using nuclear shell model

Nuclear Theory 2024-10-10 v1

Abstract

Our study employs the nuclear shell model to systematically compute the half-lives of β\beta -decay for nuclei in the mass range of A=1839A = 18-39, encompassing the majority of sdsd shell nuclei. This analysis utilizes the USDB and SDNN Hamiltonians. The theoretical outcomes contain calculations of various parameters such as QQ -values, half-lives, excitation energy, logftft values, and branching ratios. We explore these results with axial-vector coupling constant for weak interactions, denoted as gAg_A(=1.27)(= 1.27), and κ\kappa value (=6289)(= 6289). We perform calculations of Gamow Teller matrix elements for 116 decay processes to calculate the quenching factor; we found a quenching factor of q=0.794±0.05q = 0.794\pm0.05 for the USDB interaction and q=0.815±0.04q = 0.815\pm0.04 for the SDNN interaction. We have also calculated superallowed transitions 0+0+0^+ \rightarrow 0^+ for seven nuclei. Further, we have also included the electron capture phase space factor for the required nuclei to calculate the half-lives. This inclusion leads to small contribution in results, particularly for nuclei where electron capture (EC) plays a significant role. The overall results are in agreement with the experimental data.

Keywords

Cite

@article{arxiv.2410.06747,
  title  = {Study of $\beta^+$/EC-decay properties of $sd$ shell nuclei using nuclear shell model},
  author = {Surender and Vikas Kumar and Praveen C. Srivastava},
  journal= {arXiv preprint arXiv:2410.06747},
  year   = {2024}
}

Comments

16 pages, 4 figures

R2 v1 2026-06-28T19:14:08.742Z