Matsumoto Megumi, Matsuno Junya, Tsuchiyama Akira, Nakamura Tomoki, Enokido Yuma, Kikuiri Mizuha, Nakato Aiko, Yasutake Masahiro, Uesugi Kentaro, Takeuchi Akihisa, Enju Satomi, Okumura Shota, Mitsukawa Itaru, Sun Mingqi, Miyake Akira, Haruta Mitsutaka, Igami Yohei, Yurimoto Hisayoshi, Noguchi Takaaki, Okazaki Ryuji, Yabuta Hikaru, Naraoka Hiroshi, Sakamoto Kanako, Tachibana Shogo, Zolensky Michael, Yada Toru, Nishimura Masahiro, Miyazaki Akiko, Yogata Kasumi, Abe Masanao, Okada Tatsuaki, Usui Tomohiro, Yoshikawa Makoto, Saiki Takanao, Tanaka Satoshi, Terui Fuyuto, Nakazawa Satoru, Watanabe Sei-Ichiro, Tsuda Yuichi
Department of Earth and Planetary Materials Sciences, Tohoku University, Miyagi 980-8578, Japan.
Research Organization of Science and Technology, Ritsumeikan University, Shiga 525-8577, Japan.
Sci Adv. 2024 Jan 19;10(3):eadi7203. doi: 10.1126/sciadv.adi7203.
The Hayabusa2 spacecraft delivered samples of the carbonaceous asteroid Ryugu to Earth. Some of the sample particles show evidence of micrometeoroid impacts, which occurred on the asteroid surface. Among those, particles A0067 and A0094 have flat surfaces on which a large number of microcraters and impact melt splashes are observed. Two impact melt splashes and one microcrater were analyzed to unveil the nature of the objects that impacted the asteroid surface. The melt splashes consist mainly of Mg-Fe-rich glassy silicates and Fe-Ni sulfides. The microcrater trapped an impact melt consisting mainly of Mg-Fe-rich glassy silicate, Fe-Ni sulfides, and minor silica-rich glass. These impact melts show a single compositional trend indicating mixing of Ryugu surface materials and impactors having chondritic chemical compositions. The relict impactor in one of the melt splashes shows mineralogical similarity with anhydrous chondritic interplanetary dust particles having a probable cometary origin. The chondritic micrometeoroids probably impacted the Ryugu surface during its residence in a near-Earth orbit.
隼鸟2号宇宙飞船将碳质小行星龙宫的样本带回了地球。一些样本颗粒显示出小行星表面曾遭受微流星体撞击的迹象。其中,A0067和A0094颗粒具有平坦表面,在其上观察到大量微陨石坑和撞击熔化物溅射物。对两处撞击熔化物溅射物和一个微陨石坑进行了分析,以揭示撞击小行星表面的物体的性质。熔化物溅射物主要由富含镁铁的玻璃质硅酸盐和铁镍硫化物组成。微陨石坑中捕获了一种主要由富含镁铁的玻璃质硅酸盐、铁镍硫化物和少量富含二氧化硅的玻璃组成的撞击熔体。这些撞击熔体呈现出单一的成分趋势,表明龙宫表面物质与具有球粒陨石化学成分的撞击体发生了混合。其中一处熔化物溅射物中的残留撞击体与可能起源于彗星的无水球粒陨石星际尘埃颗粒具有矿物学相似性。这些球粒陨石微流星体可能在龙宫位于近地轨道期间撞击了其表面。