Dominik Koll, Sebastian Fichter, M.A.C. Hotchkis, S T Battisson, Sabrina Beutner, L. Keith Fifield, M.B. Froehlich, Johannes Lachner, Stefan Pavetich, Georg Rugel, Z. Slavkovská, S.G. Tims, A. Wallner
Abstract Where are the heavy elements produced in the Universe? While core-collapse supernovae are confirmed sources of 60 Fe, the origin of heavier r-process nuclei such as 244 Pu and 247 Cm remains debated. Here we used single-atom counting of live 60 Fe, 244 Pu and 247 Cm in a deep-ocean ferromanganese crust to trace such nucleosynthesis events near Earth over millions of years. The observed non-correlation of the 244 Pu and 60 Fe profiles supports a continuous r-process influx to Earth that is independent of core-collapse supernovae and constrains the core-collapse supernova r-process yield of actinide isotopes. The non-observation of 247 Cm, produced concurrently with 244 Pu, sets a time limit on the last actinide-producing r-process event near Earth of more than 90–100 Myr ago. Our measured interstellar signatures suggest the occurrence of an old and rare r-process event leading to a diffuse 244 Pu background inside and outside the Local Bubble.