English

Galactic Chemical Evolution of Radioactive Isotopes with an s-process Contribution

Astrophysics of Galaxies 2022-01-12 v1

Abstract

Analysis of inclusions in primitive meteorites reveals that several short-lived radionuclides (SLRs) with half-lives 0.11000.1-100 Myr existed in the early Solar System (ESS). We investigate the ESS origin of 107^{107}Pd, 135^{135}Cs, and 182^{182}Hf, which are produced by slowslow neutron captures (the ss-process) in asymptotic giant branch (AGB) stars. We modelled the galactic abundances of these SLRs using the OMEGA+ galactic chemical evolution (GCE) code and two sets of mass- and metallicity-dependent AGB nucleosynthesis yields (Monash and FRUITY). Depending on the ratio of the mean life τ\tau of the SLR to the average length of time between the formation of AGB progenitor γ\gamma, we calculate timescales relevant for the birth of the Sun. If τ/γ2\tau/\gamma\gtrsim2, we predict self-consistent isolation times between 9 and 26 Myr by decaying the GCE predicted 107^{107}Pd/108^{108}Pd, 135^{135}Cs/133^{133}Cs, and 182^{182}Hf/180^{180}Hf ratios to their respective ESS ratios. The predicted 107^{107}Pd/182^{182}Hf ratio indicates that our GCE models are missing 973%9-73\% of 107^{107}Pd and 108^{108}Pd in the ESS. This missing component may have come from AGB stars of higher metallicity than those that contributed to the ESS in our GCE code. If τ/γ0.3\tau/\gamma\lesssim0.3, we calculate instead the time (TLET_{\rm LE}) from the last nucleosynthesis event that added the SLRs into the presolar matter to the formation of the oldest solids in the ESS. For the 2 M_\odot, Z=0.01Z=0.01 Monash model we find a self-consistent solution of TLE=25.5T_{\rm LE}=25.5 Myr.

Keywords

Cite

@article{arxiv.2110.11126,
  title  = {Galactic Chemical Evolution of Radioactive Isotopes with an s-process Contribution},
  author = {T. C. L. Trueman and B. Côté and A. Yagüe López and J. den Hartogh and M. Pignatari and B. Soós and A. I. Karakas and M. Lugaro},
  journal= {arXiv preprint arXiv:2110.11126},
  year   = {2022}
}