NIRS3 spectral analysis of the artificial Omusubi-Kororin crater on Ryugu

Author:

Galiano A1ORCID,Palomba E12,Dirri F1,Longobardo A1,Kitazato K3,Iwata T4,Matsuoka M5,Hiroi T6,Takir D7,Nakamura T8,Abe M4,Ohtake M4,Matsuura S9,Watanabe S410,Yoshikawa M4,Saiki T4,Tanaka S4,Okada T4,Yamamoto Y4,Takei Y4,Shirai K4,Hirata N311,Matsumoto K12ORCID,Tsuda Y4

Affiliation:

1. INAF-IAPS , 00133 Rome, Italy

2. SSDC-ASI , 00133 Rome, Italy

3. University of Aizu , Aizu-Wakamatsu, Fukushima 965-8580, Japan

4. Institute of Space and Astronautical Science (ISAS), Japan Aerospace Exploration Agency , Sagamihara 252-5210, Japan

5. Geological Survey of Japan (GSJ), National Institute of Advanced Industrial Science and Technology (AIST) , Ibaraki 305-8567, Japan

6. Department of Earth, Environmental and Planetary Sciences, Brown University , Providence, RI 02912, USA

7. Jacobs/NASA Johnson Space Center , Houston, TX 77058, USA

8. Tohoku University , Miyagi 980-8577, Japan

9. Kwansei Gakuin University , Hyogo 662-8501, Japan

10. Nagoya University , Nagoya 464-8601, Japan

11. Kobe University , Kobe 657-8501, Japan

12. National Astronomical Observatory of Japan , Mitaka 181-8588, Japan

Abstract

ABSTRACT The JAXA Hayabusa2 mission accomplished the formation of an artificial crater on the asteroid Ryugu. The aim of this work is to analyse the area surrounding the artificial crater and reveal spectral variability compared to the same region before the crater formation, to mineralogically and physically characterize the subsurface exposed material. The crater’s investigation focused on the analysis of two regions corresponding to the inner part of crater (the pit and the crater wall/floor), two areas related to ejecta deposited close to the crater, two areas of ejecta moved far from the crater, and two external areas. Each area was investigated both before and after the crater formation, by the study of the photometrically corrected spectral parameters: the 1.9 $\mu$m reflectance, the near-infrared spectral slope, and the depth of the bands at 2.7 and 2.8 $\mu$m. The subsurface material of the post-crater areas shows deeper absorption bands, a decrease in reflectance, and a reddening in spectral slope with respect to the surface material of pre-crater areas. The subsurface regolith could have experienced a lower OH devolatilization due to space weathering and/or could be composed of finer dark grains than the surface layer. The ejecta reached distances of $\sim $20 m from the impact point, mainly moving in the northern direction; nevertheless, a few ejecta also reached the south-eastern part of crater.

Funder

Japan Aerospace Exploration Agency

German Aerospace Center

Centre National d’Etudes Spatiales

NASA

Nagoya University

University of Tokyo

National Astronomical Observatory of Japan

University of Aizu

Italian Space Agency

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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