Perihelion history and atmospheric survival as primary drivers of the Earth`s meteorite record
arXiv:2504.10690 · doi:10.1038/s41550-025-02526-6
Abstract
Models predict that more than half of all impacting meteoroids should be carbonaceous, reflecting the abundance of carbon-rich asteroids in the main belt and near-Earth space. Yet carbonaceous chondrites represent only about 4% of meteorites recovered worldwide. Here we analyse 7,982 meteoroid impacts and 540 potential meteorite falls from 19 global observation networks and demonstrate that intense thermal stress at low perihelion distances coupled with the filtering effect of Earth`s atmosphere explains this mismatch. Meteoroids repeatedly subjected to intense thermal cycling near the Sun fracture and weaken, removing the most friable objects even before atmospheric entry. Our data also show that tidally disrupted meteoroid streams produce especially fragile fragments that rarely survive to the ground. Consequently, compact, higher-strength, thermally cycled bodies dominate the meteorite record. These findings reconcile the predicted carbonaceous flux with its scarcity in collections, underscoring how orbital evolution and atmospheric filtering shape the materials that reach Earth`s surface.
Accepted in Nature Astronomy
References in corpus (25)
- The Global Meteor Network -- Methodology and First Results
- A Global Fireball Observatory
- Discovery of a new branch of the Taurid meteoroid stream as a real source of potentially hazardous bodies
- Estimating trajectories of meteors: an observational Monte Carlo approach -- I. Theory
- Two Strengths of Ordinary Chondritic Meteoroids as Derived from their Atmospheric Fragmentation Modeling
- The Maribo CM2 meteorite fall - survival of weak material at high entry speed
- Source regions of carbonaceous meteorites and NEOs
- Data on 824 fireballs observed by the digital cameras of the European Fireball Network in 2017-2018. I. Description of the network, data reduction procedures, and the catalog
- Properties and evolution of NEO families created by tidal disruption at Earth
- The Žďár nad Sázavou meteorite fall: Fireball trajectory, photometry, dynamics, fragmentation, orbit, and meteorite recovery
- Determining fireball fates using the - criterion
- New methodology to determine the terminal height of a fireball
- Data on 824 fireballs observed by the digital cameras of the European Fireball Network in 2017-2018. II. Analysis of orbital and physical properties of centimeter-sized meteoroids
- Tidal disruption of near-Earth asteroids during close encounters with terrestrial planets
- Supercatastrophic disruption of asteroids in the context of SOHO comet, fireball and meteor observations
- Arpu Kuilpu: An H5 from the Outer Main Belt
- Confirmation and characterization of IAU temporary meteor showers in EDMOND database
- The orbital clusters among the near Earth asteroids
- Successful Recovery of an Observed Meteorite Fall Using Drones and Machine Learning
- Near Earth stream decoherence revisited: the limits of orbital similarity
- The main asteroid belt: the primary source of debris on comet-like orbits
- Minimum perihelion distances and associated dwell times for near-Earth asteroids
- Comparing the dynamics of Jupiter-family Comets and comet-like fireballs
- Spectral properties of ablating meteorite samples for improved meteoroid composition diagnostics
- Resonant mechanisms that produce near-Sun asteroids
Cited by in corpus (4)
- Century-Scale Effect of Climate Change on Meteorite Falls
- Physical Analysis of Bennu Samples Reveals Regolith Production by Collisional Disruption on Near-Earth Asteroids
- Weak S-type asteroids compared to C-type explain the observed size distribution of the main belt
- A Near-Earth Object Model Calibrated to Earth Impactors