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Distances to Recent Near-Earth Supernovae From Geological and Lunar 60Fe

Published 20 Sep 2023 in astro-ph.SR and astro-ph.HE | (2309.11604v1)

Abstract: Near-Earth supernova blasts which engulf the solar system have left traces of their ejecta in the geological and lunar records. There is now a wealth of data on live radioactive <sup>60{}<sup>{60}Fe pointing to a supernova at 3 Myr ago, as well as the recent discovery of an event at 7 Myr ago. We use the available measurements to evaluate the distances to these events. For the better analyzed supernova at 3 Myr, samples include deep-sea sediments, ferromanganese crusts, and lunar regolith; we explore the consistency among and across these measurements, which depends sensitively on the uptake of iron in the samples as well as possible anisotropies in the <sup>60{}<sup>{60}Fe fallout. There is also significant uncertainty in the astronomical parameters needed for these calculations. We take the opportunity to perform a parameter study on the effects that the ejected <sup>60{}<sup>{60}Fe mass from a core-collapse supernova and the fraction of dust that survives the remnant have on the resulting distance. We find that with an ejected <sup>60{}<sup>{60}Fe mass of 3×10<sup>−5</sup>M⊙3\times10<sup>{-5}</sup> M_\odot and a dust fraction of 10%, the distance range for the supernova 3 Myr ago is D∼20−140D \sim 20 - 140 pc, with the most likely range between $50 - 65$ pc. Using the same astrophysical parameters, the distance for the supernova at 7 Myr ago is D∼110D \sim 110 pc. We close with a brief discussion of geological and astronomical measurements that can improve these results.

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