The lunar surface as a recorder of astrophysical processes
arXiv:2011.12744 · doi:10.1098/rsta.2019.0562
Abstract
The lunar surface has been exposed to the space environment for billions of years and during this time has accumulated records of a wide range of astrophysical phenomena. These include solar wind particles and the cosmogenic products of solar particle events which preserve a record of the past evolution of the Sun, and cosmogenic nuclides produced by high-energy galactic cosmic rays which potentially record the galactic environment of the Solar System through time. The lunar surface may also have accreted material from the local interstellar medium, including supernova ejecta and material from interstellar clouds encountered by the Solar System in the past. Owing to the Moon's relatively low level of geological activity, absence of an atmosphere, and, for much of its history, lack of a magnetic field, the lunar surface is ideally suited to collect these astronomical records. Moreover, the Moon exhibits geological processes able to bury and thus both preserve and 'time-stamp' these records, although gaining access to them is likely to require a significant scientific infrastructure on the lunar surface.
Published in Philosophical Transactions of the Royal Society, A379: 20190562 (2020)
References in corpus (8)
- The faint young Sun problem
- Astrophysical Shrapnel: Discriminating Among Near-Earth Stellar Explosion Sources of Live Radioactive Isotopes
- A guided map to the Spiral arms in the galactic disk of the Milky Way
- Recent advances in the determination of some Galactic constants in the Milky Way
- Was the Sun a Slow Rotator? -- Sodium and Potassium Constraints from the Lunar Regolith
- Project Icarus: A Review of Local Interstellar Medium Properties of Relevance for Space Missions to the Nearest Stars
- Stellar encounters with giant molecular clouds
- Impacts of Dust Grains Accelerated by Supernovae on the Moon