Tidal disruption of near-Earth asteroids during close encounters with terrestrial planets
arXiv:2312.08247 · doi:10.3847/2041-8213/ad151b
Abstract
Numerical modeling has long suggested that gravitationally-bound (or so-called rubble-pile) near-Earth asteroids (NEAs) can be destroyed by tidal forces during close and slow encounters with terrestrial planets. However, tidal disruptions of NEAs have never been directly observed nor have they been directly attributed to any families of NEAs. Here we show population-level evidence for the tidal disruption of NEAs during close encounters with the Earth and Venus. Debiased model distributions of NEA orbits and absolute magnitudes based on observations by the Catalina Sky Survey during 2005--2012 underpredict the number of NEAs with perihelion distances coinciding with the semimajor axes of Venus and the Earth. A detailed analysis of the orbital distributions of the excess NEAs shows that their characteristics agree with the prediction for tidal disruptions, and they cannot be explained by observational selection effects or orbital dynamics. Accounting for tidal disruptions in evolutionary models of the NEA population partly bridges the gap between the predicted rate of impacts by asteroids with diameters of tens of meters and observed statistics of fireballs in the same size range.
8 pages, 5 figures, accepted for publication in ApJL
References in corpus (5)
- NEOMOD: A New Orbital Distribution Model for Near Earth Objects
- Tidal distortion and disruption of rubble-pile bodies revisited -- Soft-sphere discrete element analyses
- Properties and evolution of NEO families created by tidal disruption at Earth
- Searching for the first Near-Earth Object family
- Co-orbital Asteroids as the Source of Venus's Zodiacal Dust Ring
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- Statistical significance of meteorite-asteroid pairs using geocentric parameters
- The steady-state population of Earth's co-orbitals of lunar provenance
- A Near-Earth Object Model Calibrated to Earth Impactors