The Solar System calcium isotopic composition inferred from Ryugu samples

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  • F. Moynier
  • W. Dai
  • T. Yokoyama
  • Y. Hu
  • M. Paquet
  • Y. Abe
  • J. Aleon
  • C. M. O'D. Alexander
  • S. Amari
  • Y. Amelin
  • K.-I. Bajo
  • A. Bouvier
  • R. W. Carlson
  • M. Chaussidon
  • B.-G. Choi
  • N. Dauphas
  • A. M. Davis
  • T. Di Rocco
  • W. Fujiya
  • R. Fukai
  • I. Gautam
  • M. K. Haba
  • Y. Hibiya
  • H. Hidaka
  • H. Homma
  • P. Hoppe
  • G. R. Huss
  • K. Ichida
  • T. Iizuka
  • T. R. Ireland
  • A. Ishikawa
  • M. Ito
  • S. Itoh
  • N. Kawasaki
  • N. T. Kita
  • K. Kitajima
  • T. Kleine
  • S. Komatani
  • A. N. Krot
  • M.-C. Liu
  • Y. Masuda
  • K. D. McKeegan
  • M. Morita
  • K. Motomura
  • I. Nakai
  • K. Nagashima
  • D. Nesvorny
  • A. Nguyen
  • L. Nittler
  • M. Onose
  • A. Pack
  • C. Park
  • L. Piani
  • L. Qin
  • S. S. Russell
  • N. Sakamoto
  • M. Schönbächler
  • L. Tafla
  • H. Tang
  • K. Terada
  • Y. Terada
  • T. Usui
  • S. Wada
  • M. Wadhwa
  • R. J. Walker
  • K. Yamashita
  • Q.-Z. Yin
  • S. Yoneda
  • E. D. Young
  • H. Yui
  • A.-C. Zhang
  • T. Nakamura
  • H. Naraoka
  • T. Noguchi
  • R. Okazaki
  • K. Sakamoto
  • H. Yabuta
  • M. Abe
  • A. Miyazaki
  • A. Nakato
  • M. Nishimura
  • T. Okada
  • T. Yada
  • K. Yogata
  • S. Nakazawa
  • T. Saiki
  • S. Tanaka
  • F. Terui
  • Y. Tsuda
  • S.-I. Watanabe
  • M. Yoshikawa
  • S. Tachibana
  • H. Yurimoto

CO CV CM CI Ryugu A Ryugu C 0.0 0.5 1.0 1.5 44/40CaSRM915a (age corrected) The Hayabusa2 spacecraft has returned samples from the Cb-type asteroid (162173) Ryugu to Earth. Previous petrological and chemical analyses support a close link between Ryugu and CI chondrites that are presumed to be chemically the most primitive meteorites with a solar-like composition. However, Ryugu samples are highly enriched in Ca compared to typical CI chondrites. To identify the cause of this discrepancy, here we report stable Ca isotopic data (expressed as delta 44/40CaSRM915a) for returned Ryugu samples collected from two sites. We found that samples from both sites have similar delta 44/40CaSRM915a (0.58 +/- 0.03 parts per thousand and 0.55 +/- 0.08 parts per thousand, 2 s.d.) that fall within the range defined by CIs. This isotopic similarity suggests that the Ca budget of CIs and Ryugu samples is dominated by carbonates, and the variably higher Ca contents in Ryugu samples are due to the abundant carbonates. Precipitation of carbonates on Ryugu likely coincided with a major episode of aqueous activity dated to have occurred similar to 5 Myr after Solar System formation. Based on the pristine Ryugu samples, the average delta 44/40CaSRM915a of the Solar System is defined to be 0.57 +/- 0.04 parts per thousand (2 s.d.).

Original languageEnglish
JournalGeochemical Perspectives Letters
Volume24
Pages (from-to)1-6
Number of pages6
ISSN2410-339X
DOIs
Publication statusPublished - 2022

    Research areas

  • REFRACTORY INCLUSIONS, ELEMENT ABUNDANCES, MODAL MINERALOGY, FRACTIONATION, CHONDRITES, EARTH, CI, METEORITES

ID: 325825958