龙宫的无水成分及其与外太阳系原始尘埃的光谱联系

R. Brunetto, C. Lantz, Y. Fukuda, A. Aléon‐Toppani, T. Nakamura, Z. Dionnet, D. Baklouti, Ferenc Borondics, Z. Djouadi, S. Rubino, K. Amano, M. Matsumoto, Y. Fujioka, T. Morita, M. Kukuiri, E. Kagawa, M. Matsuoka, R. Milliken, H. Yurimoto, T. Noguchi, R. Okazaki, H. Yabuta, H. Naraoka, K. Sakamoto, S. Tachibana, T. Yada, M. Nishimura, A. Nakato, A. Miyazaki, K. Yogata, M. Abe, T. Okada, T. Usui, M. Yoshikawa, T. Saiki, S. Tanaka, F. Terui, S. Nakazawa, S. Watanabe, Y. Tsuda
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摘要

龙宫是第二代c型小行星,由主小行星带中先前较大天体的碎片重新组装而成。隼鸟2号返回的大部分琉球样品都是由水蚀矿物组成的岩性,原始橄榄石和辉石碎屑的岩性变化最小。这些碎片是揭示龙宫母小行星形成的原始构造块的尘埃组成的非常有趣的物体。我们在龙宫一毫米大小的岩石中发现了一些富含橄榄石、辉石和无定形硅酸盐的颗粒,它们的红外光谱与d型小行星Hektor(一颗木星特洛伊)、海尔-波普彗星以及一些可能来自彗星的无水星际尘埃颗粒相似。这一结果表明,Ryugu的主要母体含有类似于外太阳系形成的小行星(可能还有一些彗星)的无水成分,并且Ryugu保留了有关我们太阳系历史不同时期星子形成和演化的宝贵信息。
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Ryugu’s Anhydrous Ingredients and Their Spectral Link to Primitive Dust from the Outer Solar System
Ryugu is a second-generation C-type asteroid formed by the reassembly of fragments of a previous larger body in the main asteroid belt. While the majority of Ryugu samples returned by Hayabusa2 are composed of a lithology dominated by aqueously altered minerals, clasts of pristine olivine and pyroxene remain in the least-altered lithologies. These clasts are objects of great interest for revealing the composition of the dust from which the original building blocks of Ryugu's parent asteroid formed. Here we show that some grains rich in olivine, pyroxene, and amorphous silicates discovered in one millimeter-sized stone of Ryugu have infrared spectra similar to the D-type asteroid Hektor (a Jupiter Trojan), to comet Hale–Bopp, and to some anhydrous interplanetary dust particles of probable cometary origin. This result indicates that Ryugu's primary parent body incorporated anhydrous ingredients similar to the building blocks of asteroids (and possibly some comets) formed in the outer solar system, and that Ryugu retained valuable information on the formation and evolution of planetesimals at different epochs of our solar system's history.
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