Mars encounters cause fresh surfaces on some near-Earth asteroids

All airless bodies are subject to the space environment, and spectral differences between asteroids and meteorites suggest many asteroids become weathered on very short (<1 Myr) timescales. The spectra of some asteroids, particularly Q-types, indicate surfaces that appear young and fresh, implyin...

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Bibliographic Details
Main Authors: DeMeo, Francesca E. (Contributor), Binzel, Richard P. (Contributor), Lockhart, Matthew (Contributor)
Other Authors: Massachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences (Contributor)
Format: Article
Language:English
Published: Elsevier, 2016-02-26T03:30:14Z.
Subjects:
Online Access:Get fulltext
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100 1 0 |a DeMeo, Francesca E.  |e author 
100 1 0 |a Massachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences  |e contributor 
100 1 0 |a DeMeo, Francesca E.  |e contributor 
100 1 0 |a Binzel, Richard P.  |e contributor 
100 1 0 |a Lockhart, Matthew  |e contributor 
700 1 0 |a Binzel, Richard P.  |e author 
700 1 0 |a Lockhart, Matthew  |e author 
245 0 0 |a Mars encounters cause fresh surfaces on some near-Earth asteroids 
260 |b Elsevier,   |c 2016-02-26T03:30:14Z. 
856 |z Get fulltext  |u http://hdl.handle.net/1721.1/101288 
520 |a All airless bodies are subject to the space environment, and spectral differences between asteroids and meteorites suggest many asteroids become weathered on very short (<1 Myr) timescales. The spectra of some asteroids, particularly Q-types, indicate surfaces that appear young and fresh, implying they have been recently been exposed. Previous work found that Earth encounters were the dominant freshening mechanism and could be responsible for all near-Earth object (NEO) Q-types. In this work we increase the known NEO Q-type sample of by a factor of three. We present the orbital distributions of 64 Q-type near-Earth asteroids, and seek to determine the dominant mechanisms for refreshing their surfaces. Our sample reveals two important results: (i) the relatively steady fraction of Q-types with increasing semi-major axis and (ii) the existence of Q-type near-Earth asteroids with Minimum Orbit Intersection Distances (MOID) that do not have orbit solutions that cross Earth. Both of these are evidence that Earth-crossing is not the only scenario by which NEO Q-types are freshened. The high Earth-MOID asteroids represent 10% of the Q-type population and all are in Amor orbits. While surface refreshing could also be caused by Main Belt collisions or mass shedding from YORP spinup, all high Earth-MOID Q-types have the possibility of encounters with Mars indicating Mars could be responsible for a significant fraction of NEOs with fresh surfaces. 
520 |a National Science Foundation (U.S.) (Grant 6920422) 
520 |a United States. National Aeronautics and Space Administration (Grant 09-NEOO009-0001) 
520 |a National Science Foundation (U.S.) (Grant 0506716) 
546 |a en_US 
655 7 |a Article 
773 |t Icarus