<sup>60</sup>Fe and <sup>244</sup>Pu deposited on Earth constrain the r-process yields of recent nearby supernovae.

Wallner, A; Froehlich, M B; Hotchkis, M A C; Kinoshita, N; Paul, M; Martschini, M; Pavetich, S; Tims, S G et al. · Science · 2021

basic_science · Level V

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Abstract

Half of the chemical elements heavier than iron are produced by the rapid neutron capture process (r-process). The sites and yields of this process are disputed, with candidates including some types of supernovae (SNe) and mergers of neutron stars. We search for two isotopic signatures in a sample of Pacific Ocean crust-iron-60 (<sup>60</sup>Fe) (half-life, 2.6 million years), which is predominantly produced in massive stars and ejected in supernova explosions, and plutonium-244 (<sup>244</sup>Pu) (half-life, 80.6 million years), which is produced solely in r-process events. We detect two distinct influxes of <sup>60</sup>Fe to Earth in the last 10 million years and accompanying lower quantities of <sup>244</sup>Pu. The <sup>244</sup>Pu/<sup>60</sup>Fe influx ratios are similar for both events. The <sup>244</sup>Pu influx is lower than expected if SNe dominate r-process nucleosynthesis, which implies some contribution from other sources.