Water in Ryugu as a property of processes in its parent body

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
T. Le Pivert-Jolivet, R. Brunetto, C. Pilorget, D. Baklouti, J.-P. Bibring, J. Carter, V. Hamm, K. Hatakeda, T. Jiang, C. Lantz, D. Loizeau, M. Mahlke, A. Nakato, T. Okada, L. Riu, T. Usui, T. Yada, K. Yogata, J. De León, Y. Hitomi, K. Kumagai, J. Licandro, A. Myazaki, K. Nagashima, A. Nakano, M. Nishimura, T. Ojima, Y. Sugiyama, R. Tahara, T. Saiki, S. Tanaka, S. Watanabe, Y. Tsuda
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Abstract

Context. Samples from the asteroid Ryugu provide key information on the initial composition and evolutionary processes of primitive bodies.Aims. This study aims to detect H2O spectral features associated with inter-layer water in a statistically significant number of Ryugu grains protected from terrestrial contamination.Methods. We analysed hyperspectral data of 186 millimetre-sized Ryugu grains (1.5–5.7 mm) obtained using the MicrOmega instrument at the Curation Facility. Water signatures were identified by computing the spectral distance from a reference Ryugu grain that exhibits a prominent 3 µm feature, which is associated with the presence of H2O.Results. We detect rare and small water-rich regions (typically <90 × 90 µm2). No significant difference in water content is observed between grains collected from chamber A (surface collection) and chamber C (artificial crater ejecta). The water-rich regions exhibit band widths similar to those of several primitive asteroids measured by the AKARI survey, whereas the average, millimetre-scale spectra of Ryugu grains show narrower bands.Conclusions. We confirm the low abundance of inter-layer water in Ryugu samples across a statistically significant number of grains. The spectral differences between Ryugu and the primitive asteroids analysed in this study reflect differences in composition that may indicate distinct formation reservoirs or evolutionary processes.
琉球水作为母体过程的一种属性
上下文。来自小行星龙宫的样本提供了原始天体的初始组成和进化过程的关键信息。本研究旨在检测具有统计学意义的不受陆地污染的琉球颗粒中与层间水相关的水光谱特征。我们分析了使用管理设施的MicrOmega仪器获得的186毫米大小的Ryugu颗粒(1.5-5.7毫米)的高光谱数据。通过计算与参考Ryugu颗粒的光谱距离来识别水特征,该颗粒具有突出的3µm特征,这与h2o的存在有关。我们发现了罕见的和小的富水区域(通常为2)。从A室(表面收集)和C室(人工火山口喷出物)收集的颗粒之间的含水量没有显著差异。富含水的区域显示出与AKARI调查测量的几个原始小行星相似的波段宽度,而Ryugu颗粒的平均毫米尺度光谱显示出更窄的波段。我们证实了低丰度的层间水在琉球样品跨越统计显著数量的颗粒。本研究分析的Ryugu和原始小行星之间的光谱差异反映了成分的差异,可能表明不同的地层储层或演化过程。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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