Interstellar Ices as Carriers of Supernova Material to the Early Solar System
arXiv:2512.00522 · doi:10.1038/s41467-025-65672-5
Abstract
Planetary materials show systematic variations in their nucleosynthetic isotope compositions that resonate with orbital distance. The origin of this pattern remains debated, limiting how these isotopic signatures can be used to trace the precursors of terrestrial planets. Here we test the hypothesis that interstellar ices carried supernova-produced nuclides by searching for a supernova nucleosynthetic fingerprint in aqueous alteration minerals from carbonaceous and non-carbonaceous chondrite meteorites. We focus on zirconium, a refractory element that includes the neutron-rich isotope Zr formed in core-collapse supernovae. Leaching experiments reveal extreme Zr enrichments in alteration minerals, showing that they incorporated supernova material hosted in interstellar ices. We show that the Solar System's zirconium isotope variability reflects mixing between these ices and an ice-free rocky component. Finally, the presence of supernova nuclides in a volatile carrier supports models where the Solar System's nucleosynthetic variability was imparted by thermal processing of material in the protoplanetary disk and during planetary accretion.
Published in Nature Communications on November 27, 2025
References in corpus (9)
- Evolution of interstellar dust and stardust in the solar neighbourhood
- The ancient heritage of water ice in the solar system
- Planetesimal formation starts at the snow line
- Bifurcation of planetary building blocks during Solar System formation
- The origin of s-process isotope heterogeneity in the solar protoplanetary disk
- Accretion of the earliest inner solar system planetesimals beyond the water-snowline
- The mass, location and heating of the dust in the Cassiopeia A supernova remnant
- Dust depletion of metals from local to distant galaxies I: Peculiar nucleosynthesis effects and grain growth in the ISM
- Gaseous atomic nickel in the coma of interstellar comet 2I/Borisov