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Chondrules are thought to have formed during transient flash-heating events in dust-enriched regions of the solar protoplanetary disk. Although laboratory studies have characterized the oxygen isotopic compositions of chondritic materials,…

Earth and Planetary Astrophysics · Physics 2026-04-29 Sota Arakawa , Takayuki Ushikubo , Ryosuke T. Tominaga

Isotopic abundances of short-lived radionuclides such as 26Al provide the most precise chronometers of events in the early solar system, provided that they were initially homogeneously distributed. On the other hand, the abundances of the…

Astrophysics · Physics 2011-02-11 Alan P. Boss

It has been suggested that shock waves in the solar nebula formed the high temperature materials observed in meteorites and comets. It is shown that the temperatures at the inner rim of the solar nebula could have been high enough over a…

Earth and Planetary Astrophysics · Physics 2009-11-13 Kurt Liffman

A number of objects in primitive meteorites have oxygen isotopic compositions that place them on a distinct, mass-independent fractionation line with a slope of one on a three-isotope plot. The most popular model for describing how this…

Solar and Stellar Astrophysics · Physics 2015-06-11 Maria Lugaro , Kurt Liffman , Trevor R. Ireland , Sarah T. Maddison

Carbonaceous chondrites are some of the most primitive meteorites and derive from planetesimals that formed a few million years after the beginning of the solar system. Here, using new and previously published Cr, Ti, and Te isotopic data,…

Isotopic anomalies in chondrules hold important clues about the dynamics of mixing and transport processes in the solar accretion disk. These anomalies have been interpreted to indicate either disk-wide transport of chondrules or local…

Earth and Planetary Astrophysics · Physics 2020-09-21 Jonas M. Schneider , Christoph Burkhardt , Yves Marrocchi , Gregory A. Brennecka , Thorsten Kleine

A high fraction of carbon bound in solid carbonaceous material is observed to exist in bodies formed in the cold outskirts of the solar nebula, while bodies in the terrestrial planets region contain nearly none. We study the fate of the…

Earth and Planetary Astrophysics · Physics 2017-10-04 Hans-Peter Gail , Mario Trieloff

Refractory inclusions in chondritic meteorites, namely amoeboid olivine aggregates (AOAs) and Ca-Al-rich inclusions (CAIs), are among the first solids to have formed in the solar system. The isotopic composition of CAIs is distinct from…

Earth and Planetary Astrophysics · Physics 2024-01-15 Christian A. Jansen , Christoph Burkhardt , Yves Marrocchi , Jonas M. Schneider , Elias Wölfer , Thorsten Kleine

We review current observational and theoretical constraints on the Galactic chemical evolution (GCE) of oxygen isotopes in order to explore whether GCE plays a role in explaining the lower 17O/18O ratio of the Sun, relative to the…

Astrophysics of Galaxies · Physics 2015-06-05 Larry R. Nittler , Eric Gaidos

The fundamentally different isotopic compositions of non-carbonaceous (NC) and carbonaceous (CC) meteorites reveal the presence of two distinct reservoirs in the solar protoplanetary disk that were likely separated by Jupiter. However, the…

Earth and Planetary Astrophysics · Physics 2020-07-22 Fridolin Spitzer , Christoph Burkhardt , Gerrit Budde , Thomas S. Kruijer , Alessandro Morbidelli , Thorsten Kleine

Chondritic meteorites constitute the most ancient rock record available in the laboratory to study the formation of the solar system and its planets. Detailed investigations of their mineralogy, petrography, chemistry and isotopic…

Astrophysics · Physics 2008-09-11 Jerome Aleon

Isotope anomalies among planetary bodies provide key constraints on planetary genetics and the Solar System's dynamical evolution. However, to unlock the full potential of these anomalies for constraining the processing, mixing, and…

Earth and Planetary Astrophysics · Physics 2019-07-31 Christoph Burkhardt , Nicolas Dauphas , Ulrik Hans , Bernard Bourdon , Thorsten Kleine

Understanding the phases of water ice that were present in the solar nebula has implications for understanding cometary and planetary compositions as well as internal evolution of these bodies. Here we show that amorphous ice formed more…

Earth and Planetary Astrophysics · Physics 2015-06-18 Fred J. Ciesla

Chondrite meteorites are believed to represent the building blocks of the solar nebula, out of which our solar system formed. They are a mixture of silicate and oxide objects (chondrules and refractory inclusions) that experienced extremely…

Earth and Planetary Astrophysics · Physics 2012-01-19 Raquel Salmeron , Trevor Ireland

We present results from a model of oxygen isotopic anomaly production through selective photodissociation of CO within the collapsing proto-Solar cloud. Our model produces a proto-Sun with a wide range of Delta_17O values depending on the…

Astrophysics · Physics 2015-05-13 Jeong-Eun Lee , Edwin A. Bergin , James R. Lyons

The 18O/17O ratio of the Solar System is 5.2 while that of the interstellar medium (ISM) and young stellar objects is ~4. This difference cannot be explained by pollution of the Sun's natal molecular cloud by 18O-rich supernova ejecta…

Solar and Stellar Astrophysics · Physics 2014-11-20 Eric Gaidos , Alexander N. Krot , Gary R. Huss

The isotopic compositions of terrestrial hydrogen and nitrogen are clearly different from those of the nebular gas from which the solar system formed, and also differ from most of cometary values. Terrestrial N and H isotopic compositions…

Earth and Planetary Astrophysics · Physics 2014-05-27 Bernard Marty

Chondrules formed by the melting of dust aggregates in the solar protoplanetary disk and as such provide unique insights into how solid material was transported and mixed within the disk. Here we show that chondrules from enstatite and…

Earth and Planetary Astrophysics · Physics 2017-05-31 Simone Gerber , Christoph Burkhardt , Gerrit Budde , Knut Metzler , Thorsten Kleine

Partial condensation of dust from the Solar nebula is likely responsible for the diverse chemical compositions of chondrites and rocky planets/planetesimals in the inner Solar system. We present a forward physical-chemical model of a…

Earth and Planetary Astrophysics · Physics 2020-05-13 Min Li , Shichun Huang , Michail I. Petaev , Zhaohuan Zhu , Jason H. Steffen

The most abundant matrix minerals in chondritic meteorites, hydrated phyllosilicates and ferrous olivine crystals, formed predominantly in asteroids during fluid-assisted metamorphism. We infer that they formed from minerals present in…

Astrophysics · Physics 2009-11-10 Edward R. D. Scott , Alexander N. Krot
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