Vollständiger Abstract
Worum geht es in dieser Arbeit?
Introduction: Results from the Dawn mission showed us an aqueously altered cryovolcanic world of Ceres, maybe a relict Ocean World [1, 2]. Geological studies suggested brine-driven features, including the cryovolcanic dome Ahuna Mons [3] and the Cerealia and Vinalia Faculae, which are carbonate- and chloride-rich evaporites [4] formed from brine extrusion with evidence of recent activity [5]. In addition, the Haulani crater is among the youngest impact features on Ceres [6], potentially excavating relatively fresh, volatile-rich subsurface materials with distinctly bright and blue spectral characteristics [7]. In this study, we focus on the spectrophotometric properties of the geologically young features, aiming to characterize Ceres’s regolith evolution and better understand the cryovolcanic processes. Here we report the preliminary results of the Haulani crater (latitude -3º to 14º, longitude 0º to 20º) and Ahuna Mons regions (latitude -17º to -3º, longitude 308º - 322º). Data: We used the multiband images of Ceres collected by the Dawn Framing Camera with pixel scales
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Publikationsdaten
- Autor:innen
- Jian-Yang Li, Xiao-Duan Zou, Scott C. Mest, Stefan E. Schröder, Stefano Mottola, Jeffrey S. Kargel
- Quelle
- Copernicus GmbH
- Publikation
- 2022-01-01
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Jian-Yang Li, Xiao-Duan Zou, Scott C. Mest, Stefan E. Schröder, Stefano Mottola, Jeffrey S. Kargel (2022). Spectrophotometric Properties of Geologically Young Regions on Ceres. https://doi.org/10.47191/ijmra/v9-i8-12