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Pervasive aqueous alteration in the early Solar System revealed by potassium isotopic variations in Ryugu samples and carbonaceous chondrites

Authors :
Yan Hu
Frédéric Moynier
Wei Dai
Marine Paquet
Tetsuya Yokoyama
Yoshinari Abe
Jérôme Aléon
Conel M. O'D. Alexander
Sachiko Amari
Yuri Amelin
Ken-ichi Bajo
Martin Bizzarro
Audrey Bouvier
Richard W. Carlson
Marc Chaussidon
Byeon-Gak Choi
Nicolas Dauphas
Andrew M. Davis
Tommaso Di Rocco
Wataru Fujiya
Ryota Fukai
Ikshu Gautam
Makiko K. Haba
Yuki Hibiya
Hiroshi Hidaka
Hisashi Homma
Peter Hoppe
Gary R. Huss
Kiyohiro Ichida
Tsuyoshi Iizuka
Trevor R. Ireland
Akira Ishikawa
Shoichi Itoh
Noriyuki Kawasaki
Noriko T. Kita
Koki Kitajima
Thorsten Kleine
Shintaro Komatani
Alexander N. Krot
Ming-Chang Liu
Yuki Masuda
Mayu Morita
Kazuko Motomura
Izumi Nakai
Kazuhide Nagashima
David Nesvorný
Ann Nguyen
Larry Nittler
Morihiko Onose
Andreas Pack
Changkun Park
Laurette Piani
Liping Qin
Sara S. Russell
Naoya Sakamoto
Maria Schönbächler
Lauren Tafla
Haolan Tang
Kentaro Terada
Yasuko Terada
Tomohiro Usui
Sohei Wada
Meenakshi Wadhwa
Richard J. Walker
Katsuyuki Yamashita
Qing-Zhu Yin
Shigekazu Yoneda
Edward D. Young
Hiroharu Yui
Ai-Cheng Zhang
Tomoki Nakamura
Hiroshi Naraoka
Takaaki Noguchi
Ryuji Okazaki
Kanako Sakamoto
Hikaru Yabuta
Masanao Abe
Akiko Miyazaki
Aiko Nakato
Masahiro Nishimura
Tatsuaki Okada
Toru Yada
Kasumi Yogata
Satoru Nakazawa
Takanao Saiki
Satoshi Tanaka
Fuyuto Terui
Yuichi Tsuda
Sei-ichiro Watanabe
Makoto Yoshikawa
Shogo Tachibana
Hisayoshi Yurimoto
Source :
Icarus. 409
Publication Year :
2023
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2023.

Abstract

C-type asteroids are the presumed home to carbonaceous chondrites, some of which contain abundant life-forming volatiles and organics. For the first time, samples from a C-type asteroid (162173 Ryugu) were successfully returned to Earth by JAXA’s Hayabusa2 mission. These pristine samples, uncontaminated by the terrestrial environment, allow a direct comparison with carbonaceous chondrites. This study reports the stable K isotopic compositions (expressed as δ41K) of Ryugu samples and seven carbonaceous chondrites to constrain the origin of K isotopic variations in the early Solar System. Three aliquots of Ryugu particles collected at two touchdown sites have identical δ41K values, averaged at -0.194 ± 0.038‰ (2SD). The K isotopic composition of Ryugu falls within the range of δ41K values measured on representative CI chondrites, and together, they define an average δ41K value of -0.185 ± 0.078‰ (2SE), which provides the current best estimate of the K isotopic composition of the bulk Solar System. Samples of CI chondrites with δ41K values that deviate from this range likely reflect terrestrial contaminations or compositional heterogeneities at sampled sizes. In addition to CI chondrites, substantial K isotopic variability is observed in other carbonaceous chondrites and within individual chondritic groups, with δ41K values inversely correlated with K abundances in many cases. These observations indicate widespread fluid activity occurred in chondrite parent bodies, which significantly altered the original K abundances and isotopic compositions of chondrules and matrices established at their accretion.

Details

Language :
English
ISSN :
00191035
Volume :
409
Database :
NASA Technical Reports
Journal :
Icarus
Notes :
191589.04.02.01.08, , 12015908, , 101001282, , ANR-10-LABX-0023, , ANR-11-IDEX-0005-02
Publication Type :
Report
Accession number :
edsnas.20230017916
Document Type :
Report
Full Text :
https://doi.org/10.1016/j.icarus.2023.115884