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$\beta$-Decay Properties of Neutron-rich Yttrium Isotopes

Nuclear Theory 2025-03-24 v1

Abstract

In this study, we have reported key nuclear properties of weak β\beta-decay processes on Yttrium isotopes for the mass number range A=101108A = 101 - 108. This mass region is important in astrophysical rr-process abundances. Our study might be helpful in rr-process simulations. We have computed charge-changing strength distributions, β\beta-decay half-lives, β\beta-delayed neutron emission probabilities, and β\beta^{-} (EC) weak rates under stellar conditions. We have performed microscopic calculations based on deformed proton-neutron quasi-particle random phase approximation (pn-QRPA) over a wide temperature (1073×101010^7 - 3 \times 10^{10}) K and density (10101110 - 10^{11}) g/cm3^3 domain. Unique first-forbidden (U1F) transitions have been included in the calculations in addition to the allowed transitions. A significant decrease in calculated half-lives in certain cases, e.g., in 107^{107}Y (108^{108}Y) by about 67\% (42\%), has been observed because of the contribution from U1F transitions. We have compared present results with measured and theoretical works. A good agreement of our half-lives with experimental data is observed.

Keywords

Cite

@article{arxiv.2503.17242,
  title  = {$\beta$-Decay Properties of Neutron-rich Yttrium Isotopes},
  author = {Fakeha Farooq and Jameel-Un Nabi and Ramoona Shehzadi},
  journal= {arXiv preprint arXiv:2503.17242},
  year   = {2025}
}

Comments

16 Pages, 6 Tables, 1 Figures