English

Gamma-ray line emission from the Local Bubble

High Energy Astrophysical Phenomena 2024-08-28 v1 Astrophysics of Galaxies

Abstract

Deep-sea archives that include intermediate-lived radioactive 60Fe^{60}\mathrm{Fe} particles suggest the occurrence of several recent supernovae inside the present-day volume of the Local Bubble during the last 10\sim 10 Myr. The isotope 60Fe^{60}\mathrm{Fe} is mainly produced in massive stars and ejected in supernova explosions, which should always result in a sizeable yield of 26Al^{26}\mathrm{Al} from the same objects. 60Fe^{60}\mathrm{Fe} and 26Al^{26}\mathrm{Al} decay with lifetimes of 3.82 and 1.05 Myr, and emit γ\gamma-rays at 1332 and 1809 keV, respectively. These γ\gamma-rays have been measured as diffuse glow of the Milky Way, and would also be expected from inside the Local Bubble as foreground emission. Based on two scenarios, one employing a geometrical model and the other state-of-the-art hydrodynamics simulations, we estimate the expected fluxes of the 1332 and 1809 keV γ\gamma-ray lines, as well as the resulting 511 keV line from positron annihilation due to the 26Al^{26}\mathrm{Al} β+\beta^+-decay. We find fluxes in the range of 10610^{-6}-105phcm2s110^{-5}\,\mathrm{ph\,cm^{-2}\,s^{-1}} for all three lines with isotropic contributions of 10-50%. We show that these fluxes are within reach for the upcoming COSI-SMEX γ\gamma-ray telescope over its nominal satellite mission duration of 2 yr. Given the Local Bubble models considered, we conclude that in the case of 10-20 Myr-old superbubbles, the distributions of 60Fe^{60}\mathrm{Fe} and 26Al^{26}\mathrm{Al} are not co-spatial - an assumption usually made in γ\gamma-ray data analyses. In fact, this should be taken into account however when analysing individual nearby targets for their 60Fe^{60}\mathrm{Fe} to 26Al^{26}\mathrm{Al} flux ratio as this gauges the stellar evolution models and the age of the superbubbles. A flux ratio measured for the Local Bubble could further constrain models of 60Fe^{60}\mathrm{Fe} deposition on Earth and its moon.

Keywords

Cite

@article{arxiv.2405.15262,
  title  = {Gamma-ray line emission from the Local Bubble},
  author = {Thomas Siegert and Michael M. Schulreich and Niklas Bauer and Rudi Reinhardt and Saurabh Mittal and Hiroki Yoneda},
  journal= {arXiv preprint arXiv:2405.15262},
  year   = {2024}
}

Comments

accepted in A&A, 18 pages, 13 figures, 2 tables

R2 v1 2026-06-28T16:38:26.174Z