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Near-Earth Supernova Explosions: Evidence, Implications, and Opportunities

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arxiv 1903.04589 v1 pith:WUSS4OSQ submitted 2019-03-11 astro-ph.SR astro-ph.EPastro-ph.HEnucl-exphysics.space-ph

classification astro-ph.SRastro-ph.EPastro-ph.HEnucl-exphysics.space-ph
keywords supernovaevidenceexplosionsastronomyastrophysicsearthestablishedinclude
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There is now solid experimental evidence of at least one supernova explosion within 100 pc of Earth within the last few million years, from measurements of the short-lived isotope 60Fe in widespread deep-ocean samples, as well as in the lunar regolith and cosmic rays. This is the first established example of a specific dated astrophysical event outside the Solar System having a measurable impact on the Earth, offering new probes of stellar evolution, nuclear astrophysics, the astrophysics of the solar neighborhood, cosmic-ray sources and acceleration, multi-messenger astronomy, and astrobiology. Interdisciplinary connections reach broadly to include heliophysics, geology, and evolutionary biology. Objectives for the future include pinning down the nature and location of the established near-Earth supernova explosions, seeking evidence for others, and searching for other short-lived isotopes such as 26Al and 244Pu. The unique information provided by geological and lunar detections of radioactive 60Fe to assess nearby supernova explosions make now a compelling time for the astronomy community to advocate for supporting multi-disciplinary, cross-cutting research programs.

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