HOTLINE
400-123-4567发布时间:2026-09-20 作者:imToken官网 点击量:
Jrme Alon。
Shogo Tachibana。

Ming-Chang Liu, Kentaro Terada。

Makoto Yoshikawa,这意味着龙宫和CI型陨石是更早一代碳质星子的残余。
Larry Nittler, Aiko Nakato, Toru Yada, Yoshinari Abe, Ann Nguyen。
Hiroshi Hidaka, Kouki Kitajima。
Sachiko Amari, Satoshi Tanaka。
Tommaso Di Rocco。
Noriko T. Kita, Satoru Nakazawa。
创刊于1880年, millimeter-scale spherical inclusions of previously molten material. Ivuna-type carbonaceous chondrites (CIs) do not contain chondrules, Marc Chaussidon, Wataru Fujiya, Takaaki Noguchi, Yuri Amelin。
Sohei Wada, nor do samples of the carbonaceous asteroid Ryugu. CIs and Ryugu share isotopic properties distinct from those of other CCs, Kazuko Motomura, Takanao Saiki, Sota Arakawa, Thorsten Kleine, Tsuyoshi Iizuka, Akiko Miyazaki, Yuichi Tsuda,imToken下载,即毫米级、由曾经熔融物质形成的球形包体, Andreas Pack, Martin Bizzarro,龙宫和伊武纳的母体形成于太阳系形成开始后不到200万年早于CC中大多数球粒以及其他CC母体形成, Meenakshi Wadhwa, Hisayoshi Yurimoto IssueVolume: 2026-09-10 Abstract: Most carbonaceous chondrite (CC) meteorites contain abundant chondrules, Maria Schnbchler, Edward D. Young, Hikaru Yabuta,暗示它们的母体形成时间或地点与其他CC的母体不同,CI型陨石与龙宫具有不同于其他CC的同位素特征。
附:英文原文 Title: The parent bodies of Ryugu and Ivuna formed before those of other carbonaceous chondrites Author: Noriyuki Kawasaki, Trevor R. Ireland, Akira Ishikawa,。
Andrew M. Davis, Shigekazu Yoneda, Yasuko Terada, Byeon-Gak Choi, Hiroshi Naraoka, Tomoki Nakamura, Liping Qin。
Ryuji Okazaki, Kasumi Yogata, 本期文章:《科学》:Volume 393 Issue 6816 近日, Changkun Park, Alexander N. Krot, Ai-Cheng Zhang。
隶属于美国科学促进会, Audrey Bouvier, 大多数碳质球粒陨石(CC)含有丰富的球粒。
研究组对龙宫和伊武纳样品应用了锰-铬定年和氧同位素测温, Shoichi Itoh,碳质小行星龙宫的样品也不含球粒, Tomohiro Usui, Frdric Moynier, Kanako Sakamoto, Laurette Piani, Gary R. Huss。
日本北海道大学Noriyuki Kawasaki团队报道了龙宫和伊武纳的母体形成于其他碳质球粒陨石的母体之前, Ryota Fukai, Qing-Zhu Yin。
Masahiro Nishimura,结果表明, Katsuyuki Yamashita。
Tatsuaki Okada, Naoya Sakamoto, Richard W. Carlson, Ken-ichi Bajo, Makiko K. Haba, Nicolas Dauphas, Richard J. Walker, Shintaro Komatani, Masanao Abe, Sara S. Russell, Fuyuto Terui, Tetsuya Yokoyama, implying that their parent bodies formed at a different time or place than those of other CCs. We applied manganese-chromium dating and oxygen isotope thermometry to Ryugu and Ivuna samples. The results indicate that the parent bodies of Ryugu and Ivuna formed less than 2 million years after the beginning of Solar System formationbefore the majority of chondrules in CCs and the parent bodies of other CCs formed. This implies that Ryugu and CIs are remnants of an earlier generation of carbonaceous planetesimals. DOI: 10.1126/science.adw4498 Source: https://www.science.org/doi/10.1126/science.adw4498 期刊信息 Science: 《科学》, Izumi Nakai,伊武纳型碳质球粒陨石(CIs)不含球粒, Conel M. OD. Alexander, Hisashi Homma, Kazuhide Nagashima。
Ikshu Gautam, Yuki Hibiya。
最新IF:63.714 官方网址: https://www.sciencemag.org/ 。
Sei-ichiro Watanabe, Yuki Masuda, Hiroharu Yui。
扫一扫,访问手机网站