Decameter-sized Earth impactors -- I: Orbital properties
arXiv:2501.03308 · doi:10.1016/j.icarus.2024.116444
Abstract
Numerous decameter-sized asteroids have been observed impacting Earth as fireballs. These objects can have impact energies equivalent to hundreds of kilotons of TNT, posing a hazard if they impact populated areas. Previous estimates of meteoroid flux using fireball observations have shown an Earth impact rate for decameter-size objects of about once every - years. In contrast, telescopic estimates of the near-Earth asteroid population predict the impact rate of such objects to be of order - years, an order-of-magnitude difference. While the cause of this discrepancy remains unclear, tidal disruption of a larger near-Earth body has been proposed as an explanation for these excess decameter-sized impactors. The release in 2022 of previously classified United States Government (USG) satellite sensor data for fireball events has provided a wealth of new information on many of these impacts. Using this newly available USG sensor data, we present the first population-level study characterizing the orbital and dynamical properties of 14 decameter-sized Earth impactors detected by USG sensors since 1994, with a particular focus on searching for evidence of tidal disruption as the cause of the impact rate discrepancy. We find there is no evidence for recent ( years) tidal disruption and weak evidence for longer-term tidal disruption in the decameter impactor population, but that the latter conclusion is limited by small number statistics. We also investigate the origins of both the impactor and near-Earth asteroid populations of decameter-sized objects from the main asteroid belt. We find that both populations generally originate from the same source regions: primarily from the secular resonance (%) with small contributions from the Hungaria group (%) and the 3:1 Jupiter mean-motion resonance (%).
Accepted 16 December 2024 for publication in Icarus. 19 pages, 10 figures, 2 tables
References in corpus (30)
- Density of asteroids
- Solar System evolution from compositional mapping of the asteroid belt
- Debiased orbit and absolute-magnitude distributions for near-Earth objects
- The Strength of Regolith and Rubble Pile Asteroids
- Compositional distributions and evolutionary processes for the near-Earth object population: Results from the MIT-Hawaii Near-Earth Object Spectroscopic Survey (MITHNEOS
- Asteroid pairs: a complex picture
- Identification of meteorite source regions in the Solar System
- Easily Retrievable Objects among the NEO Population
- NEOMOD: A New Orbital Distribution Model for Near Earth Objects
- Observation of metre-scale impactors by the Desert Fireball Network
- Characterizing Subpopulations within the Near Earth Objects with NEOWISE: Preliminary Results
- The near-Earth asteroid population from two decades of observations
- Source regions of carbonaceous meteorites and NEOs
- Visible spectroscopy from the Mission Accessible Near-Earth Object Survey (MANOS): Taxonomic dependence on asteroid size
- 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
- Orbital characterization of superbolides observed from space: dynamical association with near-Earth objects, meteoroid streams and identification of hyperbolic meteoroids
- Constraining the Physical Properties of Near-Earth Object 2009 BD
- The debiased compositional distribution of MITHNEOS: Global match between the near-Earth and main-belt asteroid populations and excess of D-type Near-Earth Objects
- Properties and evolution of NEO families created by tidal disruption at Earth
- Ultra-Low Delta-v Objects and the Human Exploration of Asteroids
- Physical Properties of Near-Earth Asteroid 2011 MD
- 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
- Exploring Potential Environmental Benefits of Asteroid Mining
- Satellite observation of the dust trail of a major bolide event over the Bering Sea on December 18, 2018
- Near Earth stream decoherence revisited: the limits of orbital similarity
- Development of a Very Faint Meteor Detection System based on an EMCCD Sensor and Matched Filter Processing
- The frequency of window damage caused by bolide airbursts: a quarter century case study
- Are some meteoroids rubble piles?
- How likely is the interstellar origin of CNEOS14? On the reliability of the CNEOS database
Cited by in corpus (7)
- Predictions of the LSST Solar System Yield: Near-Earth Objects, Main Belt Asteroids, Jupiter Trojans, and Trans-Neptunian Objects
- BLADE: An Automated Framework for Classifying Light Curves from the Center for Near-Earth Object Studies (CNEOS) Fireball Database
- Error dependencies in the space-based CNEOS fireball database
- Statistical significance of meteorite-asteroid pairs using geocentric parameters
- Predictions of Imminent Earth Impactors Discovered by LSST
- Decameter-sized Earth Impactors -- II: A Bayesian Inference Approach to Meteoroid Ablation Modeling
- A Near-Earth Object Model Calibrated to Earth Impactors