NASA NTRS · 20010106120
Dynamical Evolution of Asteroids and Meteoroids Using the Yarkovsky Effect
Abstract
The Yarkovsky effect is a thermal radiation force which causes objects to undergo semimajor axis drift and spin up/down as a function of their spin, orbit, and material properties. This mechanism can be used to (i) deliver asteroids (and meteoroids) with diameter D < 20 km from their parent bodies in the main belt to chaotic resonance zones capable of transporting this material to Earth-crossing orbits, (ii) disperse asteroid families, with drifting bodies jumping or becoming trapped in mean-motion and secular resonances within the main belt, and (iii) modify the rotation rates of asteroids a few km in diameter or smaller enough to explain the excessive number of very fast and very slow rotators among the small asteroids. Accordingly, we suggest that nongravitational forces, which produce small but meaningful effects on asteroid orbits and rotation rates over long timescales, should now be considered as important as collisions and gravitational perturbations to our overall understanding of asteroid evolution.
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Bottke, William F., Jr., Vokrouhlicky, David, Rubincam, David P., Broz, Miroslav, Smith, David E.. 2001-01-01. Dynamical Evolution of Asteroids and Meteoroids Using the Yarkovsky Effect. https://ntrs.nasa.gov/citations/20010106120
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