The Resolved Asteroid Program - Size, shape, and pole of (52) Europa
W. J. Merline, J. D. Drummond, B. Carry, A. Conrad, P. M. Tamblyn, C., Dumas, M. Kaasalainen, A. Erikson, S. Mottola, J. Durech, G. Rousseau, R., Behrend, G. B. Casalnuovo, B. Chinaglia, J. C. Christou, C. R. Chapman, C., Neyman

TL;DR
This study used adaptive optics imaging and occultation data to determine the size, shape, and pole orientation of asteroid (52) Europa, providing a detailed 3-D shape model and insights into its impact history and composition.
Contribution
The paper presents a comprehensive 3-D shape model of (52) Europa combining AO images, occultations, and lightcurves, and refines its size, shape, and pole orientation with high precision.
Findings
Derived asteroid dimensions: 379x330x249 km.
Estimated density of 1.5 +/- 0.4 g/cm^3.
Shape closely matches ellipsoidal models with fewer large craters.
Abstract
With the adaptive optics (AO) system on the 10 m Keck-II telescope, we acquired a high quality set of 84 images at 14 epochs of asteroid (52) Europa on 2005 January 20. The epochs covered its rotation period and, by following its changing shape and orientation on the plane of sky, we obtained its triaxial ellipsoid dimensions and spin pole location. An independent determination from images at three epochs obtained in 2007 is in good agreement with these results. By combining these two data sets, along with a single epoch data set obtained in 2003, we have derived a global fit for (52) Europa of diameters (379x330x249) +/- (16x8x10) km, yielding a volume-equivalent spherical-diameter of 315 +/- 7 km, and a rotational pole within 7 deg of [RA; Dec] = [257,+12] in an Equatorial J2000 reference frame (ECJ2000: 255,+35). Using the average of all mass determinations available forEuropa, we…
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