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Impact Shock Origin of Diamonds in Ureilite MeteoritesThe origin of diamonds in ureilite meteorites is a timely topic in planetary geology as recent studies have proposed their formation at static pressures >20 GPain a large planetary body, like diamonds formed deep within the Earth ́s mantle. We investigated fragments of three diamond-bearing ureilites (two from the Almahata Sitta polymict ureilite and one from the NWA 7983 main group ureilite). In NWA7983 we found an intimate association of large monocrystalline diamonds (up to atleast 100 μm), nanodiamonds, nanographite, and nanometric grains of metallic iron,cohenite, troilite and likely schreibersite. The diamonds show a striking texture pseudo morphing inferred original graphite laths.The silicates in NWA 7983 recorda high degree of shock metamorphism. The presence of both large mono crystalline diamonds and nano diamonds in a highly shocked ureilite can be explained by catalyzed transformation from graphite during an impact shock event characterized by peak pressures possibly as low as 15 GPa for relatively long duration (on the scale of few seconds). The formation of “large” (as opposed to nano-) diamond crystals could have been enhanced by the catalytic effect of metallic Fe-Ni-C liquid coexisting with graphite. We found no evidence that formation of micrometer(s)sized diamonds or associated Fe-S-P phases in ureilites require high static pressures and long formation times. It is unlikely that any of the diamonds in ureilites formed in bodies as large as Mars or Mercury.
Document ID
20205003828
Acquisition Source
Johnson Space Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Fabrizio Nestola ORCID
(University of Padua Padova, Veneto, Italy)
Cyrena A Goodrich
(Universities Space Research Association Columbia, Maryland, United States)
Marta Morana
(University of Pavia Pavia, Italy)
Ryan S. Jakubek
(Jacobs (United States) Dallas, Texas, United States)
Anna Barbaro
(University of Pavia Pavia, Italy)
Ryan S Jakubek
(Jacobs (United States) Dallas, Texas, United States)
Oliver Christ
(Jacobs (United States) Dallas, Texas, United States)
Frank E. Brenker
(Goethe University Frankfurt Frankfurt am Main, Hessen, Germany)
Maria C Domeneghetti
(University of Pavia Pavia, Italy)
Maria C Dalconi
(University of Padua Padova, Veneto, Italy)
Matteo Alvaro
(University of Pavia Pavia, Italy)
Anna M Fioretti
(Institute of Geosciences and Earth Resources Pisa, Italy)
Konstantin Litasov
(Institute for High Pressure Physics Moscow, Russia)
Marc D Fries
(Johnson Space Center Houston, Texas, United States)
Matteo Leoni
(University of Trento Trento, Italy)
Nicola P. M. Casati
(Paul Scherrer Institute Villigen, Switzerland)
Peter Jenniskens
(University of Padua Padova, Veneto, Italy)
Muawia H. Shaddad
(University of Khartoum Khartoum, Khartoum, Sudan)
Date Acquired
June 24, 2020
Publication Date
September 28, 2020
Publication Information
Publication: Proceeding of the National Academy of Sciences of the United States of America (PNAS)
Publisher: National Academy of Sciences
Volume: 117
Issue: 41
Issue Publication Date: October 13, 2020
ISSN: 0027-8424
e-ISSN: 1091-6490
Subject Category
Lunar And Planetary Science And Exploration
Funding Number(s)
CONTRACT_GRANT: NNJ13HA01C
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Single Expert
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