The IABs represent one of only two groups of iron meteorites that did not form by fractional crystallization of liquid Fe-Ni in the core of a differentiated planetesimal. Instead, they are believed to originate from a partially differentiated body that was severely disrupted by one or more impacts during its early history. We present a detailed microstructural and paleomagnetic study of the Odessa and Toluca IAB meteorites, with a view to further constraining the complex history of the IAB parent body. X-ray photoemission electron microscopy and energy dispersive spectroscopy were used to generate high-resolution Ni/Fe maps. The crystallographic architecture of Odessa was analysed using electron backscatter diffraction. Paleomagnetic signal...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
Metallic microstructures in slowly-cooled iron-rich meteorites reflect the thermal and magnetic hist...
AbstractX-ray photoemission electron microscopy (XPEEM) enables natural remanent magnetisation to be...
The IABs represent one of only two groups of iron meteorites that did not form by fractional crystal...
The IABs represent one of only two groups of iron meteorites that did not form by fractional crystal...
The direction in which a planetary core solidifies has fundamental implications for the feasibility ...
Iron and stony‐iron meteorites form the Widmanstätten pattern during slow cooling. This pattern is c...
Iron and stony-iron meteorites form the Widmanstätten pattern during slow cooling. Thispattern is co...
This thesis investigates fundamental properties of the first planetary bodies of our solar system. S...
Tishomingo is a chemically and structurally unique iron with 32.5 wt.% Ni that contains 20% residual...
The Bocaiuva iron meteorite (IAB) has been studied magnetically and metallographically in order to u...
Meteorites contain a record of their thermal and magnetic history, written in the intergrowths of ir...
The microstructure of the outer taenite rim and cloudy zone of meteoritic metal was investigated usi...
Meteorites contain a record of their thermal and magnetic history, written in the intergrowths of ir...
The Arispe iron meteorite contains thin stingers of retained austenite (taenite) between plates of f...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
Metallic microstructures in slowly-cooled iron-rich meteorites reflect the thermal and magnetic hist...
AbstractX-ray photoemission electron microscopy (XPEEM) enables natural remanent magnetisation to be...
The IABs represent one of only two groups of iron meteorites that did not form by fractional crystal...
The IABs represent one of only two groups of iron meteorites that did not form by fractional crystal...
The direction in which a planetary core solidifies has fundamental implications for the feasibility ...
Iron and stony‐iron meteorites form the Widmanstätten pattern during slow cooling. This pattern is c...
Iron and stony-iron meteorites form the Widmanstätten pattern during slow cooling. Thispattern is co...
This thesis investigates fundamental properties of the first planetary bodies of our solar system. S...
Tishomingo is a chemically and structurally unique iron with 32.5 wt.% Ni that contains 20% residual...
The Bocaiuva iron meteorite (IAB) has been studied magnetically and metallographically in order to u...
Meteorites contain a record of their thermal and magnetic history, written in the intergrowths of ir...
The microstructure of the outer taenite rim and cloudy zone of meteoritic metal was investigated usi...
Meteorites contain a record of their thermal and magnetic history, written in the intergrowths of ir...
The Arispe iron meteorite contains thin stingers of retained austenite (taenite) between plates of f...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
Metallic microstructures in slowly-cooled iron-rich meteorites reflect the thermal and magnetic hist...
AbstractX-ray photoemission electron microscopy (XPEEM) enables natural remanent magnetisation to be...