Iron meteorites provide a record of the thermal evolution of their parent bodies, with cooling rates inferred from the structures observed in the Widmanstätten pattern. Traditional planetesimal thermal models suggest that meteorite samples derived from the same iron core would have identical cooling rates, possibly providing constraints on the sizes and structures of their parent bodies. However, some meteorite groups exhibit a range of cooling rates or point to uncomfortably small parent bodies whose survival is difficult to reconcile with dynamical models. Together, these suggest that some meteorites are indicating a more complicated origin. To date, thermal models have largely ignored the effects that impacts would have on the thermal ev...
Impact-generated shock waves can change the physical properties of meteorites and their constituent ...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
We have developed a statistical framework that uses collisional evolution models, shock physics mode...
Understanding how planets form is similar to a detective working a crime scene. The end results are ...
There is long standing problem reconciling the chemical evidence that the IVA iron meteorites formed...
Rapid cooling of planetesimal cores has been inferred for several iron meteorite parent bodies on th...
Radioisotopic ages for meteorites and their components provide constraints on the evolution of small...
Metallic microstructures in slowly-cooled iron-rich meteorites reflect the thermal and magnetic hist...
Impacts between planetesimals have largely been ruled out as a heat source in the early Solar System...
Modelling the planetary heat transport of small bodies in the early Solar System allows us to unders...
In this thesis, we study the thermal effects of meteoritical impacts and their contributions to core...
We have carried out detailed thermometric and cooling history studies of several LL-, L- and H-chond...
The ε¹⁸²W ages of magmatic iron meteorites are largely within error of the oldest solar system parti...
The direction in which a planetary core solidifies has fundamental implications for the feasibility ...
Context. The cooling histories of individual meteorites can be empirically reconstructed by using ag...
Impact-generated shock waves can change the physical properties of meteorites and their constituent ...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
We have developed a statistical framework that uses collisional evolution models, shock physics mode...
Understanding how planets form is similar to a detective working a crime scene. The end results are ...
There is long standing problem reconciling the chemical evidence that the IVA iron meteorites formed...
Rapid cooling of planetesimal cores has been inferred for several iron meteorite parent bodies on th...
Radioisotopic ages for meteorites and their components provide constraints on the evolution of small...
Metallic microstructures in slowly-cooled iron-rich meteorites reflect the thermal and magnetic hist...
Impacts between planetesimals have largely been ruled out as a heat source in the early Solar System...
Modelling the planetary heat transport of small bodies in the early Solar System allows us to unders...
In this thesis, we study the thermal effects of meteoritical impacts and their contributions to core...
We have carried out detailed thermometric and cooling history studies of several LL-, L- and H-chond...
The ε¹⁸²W ages of magmatic iron meteorites are largely within error of the oldest solar system parti...
The direction in which a planetary core solidifies has fundamental implications for the feasibility ...
Context. The cooling histories of individual meteorites can be empirically reconstructed by using ag...
Impact-generated shock waves can change the physical properties of meteorites and their constituent ...
We have evaluated various mechanisms proposed for the formation of the Widmanstätten pattern in iron...
We have developed a statistical framework that uses collisional evolution models, shock physics mode...