Physical Model of Asteroid 1620 Geographos from Radar and Optical Data

Physics

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Scientific paper

We develop a physical model of asteroid 1620 Geographos using Goldstone delay-Doppler radar images obtained August 1994 (Ostro et al. 1996, Icarus 121, 46-66) with resolution as fine as 75 m, and optical lightcurves obtained in 1969, 1983, and 1993-1994 (Magnusson et al. 1996, Icarus 123, 227-244). The data set admits a geometric ambiguity that precludes a unique model. Within this constraint, our model has maximum dimensions of (5.0, 2.0, 2.1)+/-0.15 km and a volume of <=8.8 km3, equivalent to a sphere of <=2.56 km diameter. The radar equivalent spherical albedo is >=0.12. The photometric solution provides Hapke parameters w>=0.22, g=-0.34+/-0.10, and θ=25+/-10° with assumed values h=0.02 and B0=1.32. The spin state solution does not differ significantly from that of Magnusson et al. having λ=55+/-6°, β=-46+/-4°, and P=5.2233270+/-0.00000072 h. We identify seven main features in the delay-Doppler images and their corresponding locations on the model.

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