English

Radioactive Iron Rain: Transporting $^{60}$Fe in Supernova Dust to the Ocean Floor

Solar and Stellar Astrophysics 2016-08-17 v2 Earth and Planetary Astrophysics

Abstract

Several searches have found evidence of 60^{60}Fe deposition, presumably from a near-Earth supernova (SN), with concentrations that vary in different locations on Earth. This paper examines various influences on the path of interstellar dust carrying 60^{60}Fe from a SN through the heliosphere, with the aim of estimating the final global distribution on the ocean floor. We study the influences of magnetic fields, angle of arrival, wind and ocean cycling of SN material on the concentrations at different locations. We find that the passage of SN material through the mesosphere/lower thermosphere (MLT) is the greatest influence on the final global distribution, with ocean cycling causing lesser alteration as the SN material sinks to the ocean floor. SN distance estimates in previous works that assumed a uniform distribution are a good approximation. Including the effects on surface distributions, we estimate a distance of 466+1046^{+10}_{-6} pc for a 810 M8-10 \ M_{\odot} SN progenitor. This is consistent with a SN occurring within the Tuc-Hor stellar group \sim2.8 Myr ago with SN material arriving on Earth \sim2.2 Myr ago. We note that the SN dust retains directional information to within 11^{\circ} through its arrival in the inner Solar System, so that SN debris deposition on inert bodies such as the Moon will be anisotropic, and thus could in principle be used to infer directional information. In particular, we predict that existing lunar samples should show measurable 60^{60}Fe differences.

Keywords

Cite

@article{arxiv.1604.00958,
  title  = {Radioactive Iron Rain: Transporting $^{60}$Fe in Supernova Dust to the Ocean Floor},
  author = {Brian J. Fry and Brian D. Fields and John R. Ellis},
  journal= {arXiv preprint arXiv:1604.00958},
  year   = {2016}
}

Comments

18 pages, 8 figures. Comments welcome