Aqueous alteration on main belt primitive asteroids: results from visible spectroscopy
arXiv:1402.0175 · doi:10.1016/j.icarus.2014.01.040
Abstract
This work focuses on the study of the aqueous alteration process which acted in the main belt and produced hydrated minerals on the altered asteroids. The aqueous alteration is particularly important for unraveling the processes occurring during the earliest times of the Solar System history, as it can give information both on the asteroids thermal evolution and on the localization of water sources in the asteroid belt. We present new spectral observations in the visible region of 80 asteroids belonging to the primitive classes C, G, F, B and P. We combine the present observations with the visible spectra of asteroids available in the literature for a total of 600 primitive main belt asteroids. Our analysis shows that the aqueous alteration sequence starts from the P-type objects, practically unaltered, and increases through the F, B, C, and G asteroids. Around 50% of the observed C-type asteroids show absorption features in the vis. range due to hydrated silicates, implying that more than 70% of them will have a 3 m absorption band and thus hydrated minerals on their surfaces. The process dominates in primitive asteroids located between 2.3 and 3.1 AU, that is at smaller heliocentric distances than previously suggested. The aqueous alteration process dominates in the 50--240 km sized primitive asteroids, while it is less effective for bodies smaller than 50 km. No correlation is found between the aqueous alteration process and the asteroids albedo or orbital elements. Comparing the 0.7 m band parameters of hydrated silicates and CM2 carbonaceous chondrites, we see that the band center of meteorites is at longer wavelengths than that of asteroids. This difference on center positions may be attributed to different minerals abundances, and to the fact that CM2 available on Earth might not be representative of the whole aqueous altered asteroids population.
Icarus, accepted for publication on 28 January 2014 Manuscript pages: 38; Figures: 13 ; Tables: 5
References in corpus (3)
Cited by in corpus (42)
- Asteroid Taxonomy from Cluster Analysis of Spectrometry and Albedo
- AKARI/IRC Near-Infrared Asteroid Spectroscopic Survey: AcuA-spec
- Connecting Asteroids and Meteorites with visible and near-infrared spectroscopy
- Mineralogy and Surface Composition of Asteroids
- Asteroid phase curves from ATLAS dual-band photometry
- Updated Inflight Calibration of Hayabusa2's Optical Navigation Camera (ONC) for Scientific Observations during the Cruise Phase
- A million asteroid observations in the Sloan Digital Sky Survey
- Spectral variability on primitive asteroids of the Themis and Beagle families: space weathering effects or parent body heterogeneity?
- Twenty years of SpeX: Accuracy limits of spectral slope measurements in asteroid spectroscopy
- Compositional study of asteroids in the Erigone collisional family using visible spectroscopy at the 10.4 m GTC
- Compositional Diversity Among Primitive Asteroids
- The Ch-class asteroids: Connecting a visible taxonomic class to a 3-μm band shape
- Astronomical Observations of Volatiles on Asteroids
- Simulated Space Weathering of Fe- and Mg-rich Aqueously Altered Minerals Using Pulsed Laser Irradiation
- The highly active Anhur-Bes regions in the 67P/Churyumov - Gerasimenko comet: results from OSIRIS/ROSETTA observations
- Space Weathering Trends Among Carbonaceous Asteroids
- Multi-filter photometry of Solar System Objects from the SkyMapper Southern Survey
- Phase reddening on asteroid Bennu from visible and near-infrared spectroscopy
- The homogeneous internal structure of CM-like asteroid (41) Daphne
- Some things special about NEAs: Geometric and environmental effects on the optical signatures of hydration
- Style and intensity of hydration among C-complex asteroids: a comparison to dessicated carbonaceous chondrites
- Expected spectral characteristics of (101955) Bennu and (162173) Ryugu, targets of the OSIRIS-REx and Hayabusa2 missions
- PRIMASS visits Hilda and Cybele groups
- Spectrophotometry of asteroids 32 Pomona, 145 Adeona, 704 Interamnia, 779 Nina, 330825, and 2012 QG42 and laboratory study of possible analog samples
- Ground-based Characterization of Hayabusa2 Mission Target Asteroid 162173 Ryugu: Constraining Mineralogical Composition in Preparation for Spacecraft Operations
- How Many Hydrated NEOs Are There?
- The iron record of asteroidal processes in carbonaceous chondrites
- 2004 EW95: A phyllosilicate bearing carbonaceous asteroid in the Kuiper Belt
- Grain Size Effects on UV-MIR (0.2-14 micron) Spectra of Carbonaceous Chondrite Groups
- A plausible link between the asteroid 21 Lutetia and CH carbonaceous chondrites
- A model of the 3-μm hydration band with Exponentially Modified Gaussian (EMG) profiles: application to hydrated chondrites and asteroids
- A comparative analysis of the outer-belt primitive families
- Size Distribution of Small Hilda Asteroids
- Optical spectropolarimetry of large C-complex asteroids: polarimetric evidence for heterogeneous surface compositions
- (121514) 1999 UJ7: A primitive, slow-rotating Martian Trojan
- Spectral clustering tools applied to Ceres in preparation for OSIRIS-REx color imaging of asteroid (101955) Bennu
- Near-Ultraviolet Absorption Distribution of Primitive Asteroids from Spectrophotometric Surveys
- Probing the surface environment of large T-type asteroids
- Nature of bright C-complex asteroids
- An impact-free mechanism to deliver water to terrestrial planets and exoplanets
- Mineralogical Characterization and Phase Angle Study of Two Binary Near-Earth Asteroids, Potential Targets for NASA's Janus Mission
- Spectroscopic study of Ceres' collisional family candidates