Transport of impact ejecta from Mars to its moons as a means to reveal Martian history
arXiv:1912.12056 · doi:10.1038/s41598-019-56139-x
Abstract
Throughout the history of the solar system, Mars has experienced continuous asteroidal impacts. These impacts have produced impact-generated Mars ejecta, and a fraction of this debris is delivered to Earth as Martian meteorites. Another fraction of the ejecta is delivered to the moons of Mars, Phobos and Deimos. Here, we studied the amount and condition of recent delivery of impact ejecta from Mars to its moons. Using state-of-the-art numerical approaches, we report, for the first time, that materials delivered from Mars to its moons are physically and chemically different from the Martian meteorites, which are all igneous rocks with a limited range of ages. We show that Mars ejecta mixed in the regolith of its moons potentially covers all its geological eras and consists of all types of rocks, from sedimentary to igneous. A Martian moons sample-return mission will bring such materials back to Earth, and the samples will provide a wealth of "time-resolved" geochemical information about the evolution of Martian surface environments.
9 pages, 3 figures, published in Scientific Reports
References in corpus (4)
- Formation of Phobos and Deimos via a Giant Impact
- Evolution of Water Reservoirs on Mars: Constraints from Hydrogen Isotopes in Martian Meteorites
- On the Impact Origin of Phobos and Deimos I: Thermodynamic and Physical Aspects
- On the Impact Origin of Phobos and Deimos II: True Polar Wander and Disk Evolution
Cited by in corpus (5)
- Modification of the composition and density of Mercury from late accretion
- Exploring the recycling model of Phobos formation: rubble-pile satellites
- Escape and accretion by cratering impacts: Formulation of scaling relations for high-speed ejecta
- Giga-Year Dynamical Evolution of Particles Around Mars
- Mixing model of Phobos' bulk elemental composition for the determination of its origin: Multivariate analysis of MMX/MEGANE data