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Wilson & Sagan 1995
Wilson, P.D. and Sagan, C. (1995). Spectrophotometry and organic matter on Iapetus. 1. Composition models. Journal of Geophysical Research 100: doi: 10.1029/94JE03364. issn: 0148-0227.

Iapetus shows a greater hemispheric albedo asymmetry than any other body in the solar system. Hapke scattering theory and optical constants measured in the laboratory are used to identify possible compositions for the dark material on the leading hemisphere of Iapetus. The materials considered are poly-HCN, kerogen, Murchison organic residue, Titan tholin, ice tholin, and water ice. Three-component mixtures of these materials are modeled in intraparticle, particle, and areal mixtures. In a computer grid search of ~2¿107 models, an intraparticle mixture of 25% poly-HCN, 10% Murchison residue, and 65% water ice is found to best fit the spectrum, albedo, and phase behavior of the dark material. The Murchison residue and/or water ice can be replaced by kerogen and ice tholin, respectively, and still produce very good fits. Areal and particle mixtures of poly-HCN, Titan tholin, and either ice tholin or Murchison residue are also possible models. Poly-HCN is a necessary component in almost all good models. The presence of poly-HCN can be further tested by high-resolution observations near 4.5 μm. ¿ American Geophysical Union 1995

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Abstract

Keywords
Planetology, Solid Surface Planets, Composition, Planetology, Solar System Objects, Saturnian satellites, Planetology, Solid Surface Planets, Surface materials and properties, Planetology, Solid Surface Planets, Instruments and techniques
Journal
Journal of Geophysical Research
http://www.agu.org/journals/jb/
Publisher
American Geophysical Union
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