Sep 2026· The Planetary Science Journal· Vol 7, pp. 222· 0 citations· 64 references
Physics
Abstract
The Near-Infrared Spectrometer (NIRS3) onboard Hayabusa2 observed asteroid (162173) Ryugu, searching especially for signatures of water-bearing minerals. However, during the mission, absolute reflectance measured by the Telescopic Optical Navigation Camera (ONC-T) and NIRS3 showed a systematic offset. Additionally, touchdown operations have modified the instrumental response, which has made post-second-touchdown data less reliable. Correction of these issues is crucial to interpret the subtle spectroscopic differences across the surface, better understand the origin and evolution of carbonaceous asteroids, and support the Hayabusa2♯ mission’s future observations of the asteroids (98943) Torifune and 1998 KY26. We used Ryugu observations at different mission phases for relative calibrations and lunar observations for the absolute calibration. Moon spectra acquired during the first Earth swing-by were compared to simulated ones from photometric models based on lunar orbiter and ground-based data. We then applied the updated calibration to the full Hayabusa2 proximity phase data set, enabling disk-resolved global and regional photometric analyses. We showed that the data obtained following the first and second touchdowns required downscaled corrections of 5.4% ± 1.8% and 10.3% ± 0.4% at 2 μm, respectively, while the absolute calibration revealed that NIRS3 reflectance was underestimated by about 8% compared with the original calibration. Our new photometric parameters are consistent with previous studies and indicate a weak east–west dichotomy in phase ratio and phase reddening, pointing to higher surface roughness and higher abundance of fine-grained regolith in Ryugu's eastern hemisphere.
The Martian Moons eXploration (MMX) mission of the Japan Aerospace Exploration Agency is equipped with different cameras and one spectrometer [K. Kuramoto et al., Earth, Planets Space 74, 12 (2022)] called the MMX InfraRed Spectrometer (MIRS). The instrument is devoted to investigate the origin of the Martian moons, Ph...
F. Merlin, S. Fornasier, Laurent Jorda et al.· Review of Scientific Instrum...· 0 citations
Recent JWST observations reveal that the Earth’s quasi-satellite (469219) Kamoʻoalewa possesses a high geometric albedo and a flat near-infrared spectrum, in contrast with earlier ground-based observations, posing new challenges to its compositional identification. This study evaluates the potential surface composition...
Pei Ma, Zhi-Yong Xiao, Jian-Yang Li et al.· Astronomical Journal· 0 citations
Detecting the Yarkovsky effect on kilometer-scale main-belt asteroids remains challenging, yet it directly affects impact-hazard assessment and spacecraft navigation. Ahead of the Emirates Mission to the Asteroid Belt (EMA) flybys of (10253) Westerwald (2030) and (13294) Rockox (2031), we determine precise orbits for b...
Zi-Meng Li, Run-Song Lu, Wan-Ling Yang et al.· Astronomical Journal· 0 citations
AIRS is the infrared spectroscopic instrument of ARIEL: Atmospheric Remote‐sensing Infrared Exoplanet Large‐survey mission adopted in November 2020 as the Cosmic Vision M4 ESA mission and planned to be launched in 2032 by an Ariane 6 from Kourou toward a large amplitude orbit around L2 for a 4 years mission. Within the...
B. Horeau, J. Amiaux, Clara Bataillon et al.· Astronomical Telescopes + In...· 3 citations
The Emirates Mission to the Asteroid Belt (EMA) will use the MBR Explorer spacecraft to fly past six main-belt asteroids -- (10253) Westerwald, (623) Chimaera, (13294) Rockox, (88055) Ghaf, (23871) Ousha and (59980) Moza -- before rendezvousing with, and deploying a lander onto, the extremely red (269) Justitia. We pre...
N. Erasmus, J. Ďurech, D. Trilling et al.· 0 citations
We present the first measurements from a Fabry-Perot interferometer (FPI)
installed at Bohyunsan Optical Astronomy Observatory (BOAO) in Korea. The
instrument, referred to as BHO-FPI, has been operated by the Korea Astronomy and
Space Science Institute (KASI) since January 2025. BHO-FPI observes OI 557.7 nm,
OI 630...
Jaewook Lee, Tae-Yong Yang, Young-Sil Kwak et al.· Journal of Astronomy & Space...· 0 citations
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