Global photometric properties of (162173) Ryugu

Context. The Hayabusa2 spacecraft launched by Japan Aerospace Exploration Agency has been conducting observations of the asteroid (162173) Ryugu since June 2018. The Telescopic Optical Navigation Camera (ONC-T) onboard Hayabusa2 has obtained thousands of images under a variety of illumination and vi...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2020-07, Vol.639, p.A83
Hauptverfasser: Tatsumi, E., Domingue, D., Schröder, S., Yokota, Y., Kuroda, D., Ishiguro, M., Hasegawa, S., Hiroi, T., Honda, R., Hemmi, R., Le Corre, L., Sakatani, N., Morota, T., Yamada, M., Kameda, S., Koyama, T., Suzuki, H., Cho, Y., Yoshioka, K., Matsuoka, M., Honda, C., Hayakawa, M., Hirata, N., Yamamoto, Y., Vilas, F., Takato, N., Yoshikawa, M., Abe, M., Sugita, S.
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Sprache:eng
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Zusammenfassung:Context. The Hayabusa2 spacecraft launched by Japan Aerospace Exploration Agency has been conducting observations of the asteroid (162173) Ryugu since June 2018. The Telescopic Optical Navigation Camera (ONC-T) onboard Hayabusa2 has obtained thousands of images under a variety of illumination and viewing conditions. Aims. Our objective is to examine and validate the camera calibration, derive a photometric correction for creating global albedo maps, and to interpret the photometric modeling results to characterize the surface of Ryugu. Methods. We observed (162173) Ryugu with the Gemini-South telescope, and combined these measurements with other published ground-based observations of the asteroid. The ground-based observations were compared with the data obtained by ONC-T in order to validate the radiometric calibration mutually. We used a combination of the Hapke disk-integrated and disk-resolved model equations to simultaneously analyze the combined ground- and spacecraft-based data. Results. The average spectrum of Ryugu was classified as Cb-type following the SMASSII taxonomy and C/F-type following the Tholen taxonomy based on spacecraft observations. We derived Hapke model parameters for all seven color filters, which allowed us to photometrically correct images to within an error of
ISSN:0004-6361
1432-0746
DOI:10.1051/0004-6361/201937096