Presolar stardust in asteroid Ryugu
Jens Barosch, Larry R. Nittler, Jianhua Wang, Conel M. O'D. Alexander,, Bradley T. De Gregorio, C\'ecile Engrand, Yoko Kebukawa, Kazuhide Nagashima,, Rhonda M. Stroud, Hikaru Yabuta, Yoshinari Abe, J\'er\^ome Al\'eon, Sachiko, Amari, Yuri Amelin, Ken-ichi Bajo, Laure Bejach

TL;DR
This study used NanoSIMS to identify presolar grains in asteroid Ryugu samples, revealing similarities with CI chondrites and providing insights into the asteroid's origin and preservation of ancient stellar material.
Contribution
First detection of presolar grains in Ryugu samples, establishing a link to CI chondrites and demonstrating preservation of stellar material in asteroid samples.
Findings
Presence of diverse presolar grains including silicates, oxides, SiC, and organics.
Ryugu's presolar grain abundances are similar to CI chondrites.
Evidence of small-scale heterogeneities affecting presolar material preservation.
Abstract
We have conducted a NanoSIMS-based search for presolar material in samples recently returned from C-type asteroid Ryugu as part of JAXA's Hayabusa2 mission. We report the detection of all major presolar grain types with O- and C-anomalous isotopic compositions typically identified in carbonaceous chondrite meteorites: 1 silicate, 1 oxide, 1 O-anomalous supernova grain of ambiguous phase, 38 SiC, and 16 carbonaceous grains. At least two of the carbonaceous grains are presolar graphites, whereas several grains with moderate C isotopic anomalies are probably organics. The presolar silicate was located in a clast with a less altered lithology than the typical extensively aqueously altered Ryugu matrix. The matrix-normalized presolar grain abundances in Ryugu are 4.8 ppm for O-anomalous grains, 25 ppm for SiC grains and 11 ppm for carbonaceous grains.…
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