Thermophysical Investigation of Asteroid Surfaces II: Factors Influencing Grain Size
arXiv:2107.06255 · doi:10.3847/PSJ/ac4967
Abstract
Asteroid surfaces are subjected to mechanical weathering processes that result in the development and evolution of regolith. Two proposed mechanisms--impact bombardment and thermal fatigue--have been proposed as viable and dominant weathering processes. Previously, we compiled and estimated thermal inertias of several hundred asteroids (mostly in the main-belt) for which we determined dependencies on temperature, diameter, and rotation period. In this work, we estimate grain sizes of asteroid regoliths from this large thermal inertia dataset using thermal conductivity models. Following our previous work we perform multi-variate linear model fits to the grain size dataset and quantify its dependency on diameter and rotation period. We find that the best-fit model fit indicates that asteroid grain sizes are inversely dependent on object size for <10 km asteroids and exhibits no relationship above this size cutoff. Rotation period and grain size show a positive relationship when the rotation period is greater than ~5 hr, and an inverse relationship below this rotation period. We conclude that both impact weathering and thermal fatigue are significant regolith evolution mechanisms. Furthermore, we run post-hoc t-tests between spectral groups to identify compositional differences among our asteroid set. Notably, suspected metal-rich, M-type and E-type asteroids have larger than expected grain sizes, and P-types have distinctly smaller grains than other groups
accepted to The Planetary Science Journal
References in corpus (19)
- Solar System evolution from compositional mapping of the asteroid belt
- Compositional distributions and evolutionary processes for the near-Earth object population: Results from the MIT-Hawaii Near-Earth Object Spectroscopic Survey (MITHNEOS
- Grain-scale thermoelastic stresses and spatiotemporal temperature gradients on airless bodies, implications for rock breakdown
- Landslides and Mass Shedding on Spinning Spheroidal Asteroids
- Asteroid pairs: a complex picture
- Thermophysical modeling of asteroids from WISE thermal infrared data - Significance of the shape model and the pole orientation uncertainties
- The Composition of M-type asteroids II: Synthesis of spectroscopic and radar observations
- (25143) Itokawa: The Power of Radiometric Techniques for the Interpretation of Remote Thermal Observations in the Light of the Hayabusa Rendezvous Results
- 3D shape of asteroid (6)~Hebe from VLT/SPHERE imaging: Implications for the origin of ordinary H chondrites
- Photometric survey, modelling, and scaling of long-period and low-amplitude asteroids
- Thermal properties of slowly rotating asteroids: Results from a targeted survey
- Full-field modeling of heat transfer in asteroid regolith: Radiative thermal conductivity of polydisperse particulates
- Low-phase spectral reflectance and equivalent geometric albedo of meteorites powders
- Constraining the Thermal Properties of Planetary Surfaces using Machine Learning: Application to Airless Bodies
- Thermal properties of large main-belt asteroids observed by Herschel PACS
- Constraining the Regolith Composition of Asteroid (16) Psyche via Laboratory Near-infrared Spectroscopy
- Thermophysical characteristics of the large main-belt asteroid (349) Dembowska
- Determination of size, albedo and thermal inertia of 10 Vesta family asteroids with WISE/NEOWISE observations
- Cohesive Regolith on Fast Rotating Asteroids
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- Evidence of surface heterogeneity on active asteroid (3200) Phaethon
- Quantitative grain size estimation on airless bodies from the negative polarization branch. II. Dawn mission targets (4) Vesta and (1) Ceres
- Quantitative grain size estimation on airless bodies from the negative polarization branch. I. Insights from experiments and lunar observations
- Size-Based Spectrophotometric Analysis of the Polana-Eulalia Complex
- Thermal and Dielectric Properties of Juno's Regolith at One Millimeter Wavelength