The triple near-Earth asteroid (153591) 2001 SN263: an ultra-blue, primitive target for the Aster space mission

D Perna, A Alvarez-Candal, S Fornasier… - Astronomy & …, 2014 - aanda.org
D Perna, A Alvarez-Candal, S Fornasier, Z Kaňuchová, SMG Winter, EV Neto, OC Winter
Astronomy & Astrophysics, 2014aanda.org
Context. The Brazilian Aster project plans a space mission to rendezvous and characterize
(153591) 2001 SN263, one of the only two known triple near-Earth asteroids (NEAs).
Improving the knowledge of its physical properties is necessary to optimize the mission
planning and science return. Aims. We study the surface composition and physical nature of
2001 SN263 by analyzing and comparing its reflectance spectra with laboratory spectra of
minerals and meteorites. Methods. We performed spectroscopic observations of 2001 …
Context
The Brazilian Aster project plans a space mission to rendezvous and characterize (153591) 2001 SN263, one of the only two known triple near-Earth asteroids (NEAs). Improving the knowledge of its physical properties is necessary to optimize the mission planning and science return.
Aims
We study the surface composition and physical nature of 2001 SN263 by analyzing and comparing its reflectance spectra with laboratory spectra of minerals and meteorites.
Methods
We performed spectroscopic observations of 2001 SN263 using the UV-to-NIR X-Shooter spectrograph at the ESO Very Large Telescope (VLT). Complementary photometric observations of the target were acquired with the FORS2 instrument.
Results
We find B-type, featureless convex spectra (Themis- or Polana-like). 2001 SN263 presents the bluest visible spectrum ever observed for small bodies in the solar system, even bluer than NEAs Phaethon and Bennu. The spectra suggest that the surface composition is organic- and magnetite-rich, similar to that of heated CI carbonaceous chondrites. Phyllosilicates may be abundant as well. We find hints of a coarse-grained surface and composition variety within the triple system.
Conclusions
Both the large grain size and surface variability might be connected to the formation of the triple system. The Aster mission will have the intriguing possibility of checking current models of asteroid binary formation.
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