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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

Chondritic meteorites, the building blocks of terrestrial planets, are made of an out-of-equilibrium assemblage of solids formed at high and low temperatures, either in our Solar system or previous generations of stars. This was considered…

Earth and Planetary Astrophysics · Physics 2018-11-14 Francesco C. Pignatale , Sébastien Charnoz , Marc Chaussidon , Emmanuel Jacquet

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

Meteoritical and astrophysical models of planet formation make contradictory predictions for dust concentration factors in chondrule forming regions of the solar nebula. Meteoritical and cosmochemical models strongly suggest that…

Earth and Planetary Astrophysics · Physics 2019-02-13 Alexander Hubbard , Mordecai-Mark Mac Low , Denton S. Ebel

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

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

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,…

Recent studies of chondrites have found a tungsten isotopic anomaly between chondrules and matrix. Given the refractory nature of tungsten, this implies that W was carried into the solar nebula by at least two distinct families of pre-solar…

Earth and Planetary Astrophysics · Physics 2016-08-03 Alexander Hubbard

Chondritic meteorites provide valuable opportunities to investigate the origins of the solar system. We explore impact jetting as a mechanism of chondrule formation and subsequent pebble accretion as a mechanism of accreting chondrules onto…

Earth and Planetary Astrophysics · Physics 2016-03-23 Yasuhiro Hasegawa , Neal J. Turner , Joseph Masiero , Shigeru Wakita , Yuji Matsumoto , Shoichi Oshino

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

Chondrules are millimeter-sized silicate spherules ubiquitous in primitive meteorites, but whose origin remains mysterious. One of the main proposed mechanisms for producing them is melting of solids in shock waves in the gaseous…

Earth and Planetary Astrophysics · Physics 2015-06-23 Emmanuel Jacquet , Christopher Thompson

As some of the most ancient materials in our Solar System, chondritic meteorites offer a valuable window into the early stages of planetary formation, particularly the accretion processes that built the most primitive asteroids. Until now,…

Earth and Planetary Astrophysics · Physics 2024-12-09 Anthony Seret , Guy Libourel

Chondrules are small spherical objects that formed at high temperatures early in the history of the Solar System. The key compositional characteristics of chondrules may be well explained by high gas pressures in their formation environment…

Earth and Planetary Astrophysics · Physics 2025-03-26 Mohamad Ali-Dib , Craig Walton

Recent isotopic studies of Martian meteorites by Dauphas & Pourmond (2011) have established that large (~ 3000 km radius) planetary embryos existed in the solar nebula at the same time that chondrules - millimeter-sized igneous inclusions…

Earth and Planetary Astrophysics · Physics 2015-06-04 Melissa A. Morris , Aaron C. Boley , Steven J. Desch , Themis Athanassiadou

The formation of planetesimals in the early Solar System is hardly understood, and in particular the growth of dust aggregates above millimeter sizes has recently turned out to be a difficult task in our understanding [Zsom et al. 2010,…

Earth and Planetary Astrophysics · Physics 2015-05-28 Eike Beitz , Carsten Güttler , René Weidling , Jürgen Blum

The origin of chondrules, and the chondritic sedimentary rocks that dominate the meteoritic record, is a long-standing problem in planetary science. Here, we develop a physical model for the formation of chondritic mixtures as an outcome of…

Earth and Planetary Astrophysics · Physics 2025-03-10 Sarah T. Stewart , Simon J. Lock , Philip J. Carter , Erik J. Davies , Michail I. Petaev , Stein B. Jacobsen

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

Carbonaceous chondrites are samples from planetesimals that formed 2-4 million years after solar system formation began. They consist of distinct dust components formed at different times and locations in the accretion disk and whose…

Earth and Planetary Astrophysics · Physics 2026-04-21 Nerea Gurrutxaga , Joanna Drazkowska , Vignesh Vaikundaraman , Thorsten Kleine

In this paper, the possibility that the moderately volatile element depletions observed in chondritic meteorites are the results of planetesimals accreting in a solar nebula that cooled from an initially hot state (temperatures > 1350 K out…

Astrophysics · Physics 2015-06-24 Fred J. Ciesla

We developed an experimental setup to test the hypothesis that accretionary dust rims around chondrules formed in the solar nebula at elevated temperatures. Our experimental method allows us to form dust rims around chondrule-analogs while…

Earth and Planetary Astrophysics · Physics 2015-03-13 Eike Beitz , Jürgen Blum , Romain Mathieu , Andreas Pack , Dominik C. Hezel
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