Volatile elements play a key role in the dynamics of planetary evolution. Extensive work has been carried out to determine the abundance, distribution, and source(s) of volatiles in planetary bodies such as the Earth, Moon, and Mars. A recent study showed that the water in apatite from eucrites has similar hydrogen isotopic compositions compared to water in terrestrial rocks and carbonaceous chondrites, suggesting that water accreted very early in the inner solar system given the ancient crystallization ages (~4.5 Ga) of eucrites. Here, the measurements of water (reported as equivalent H2O abundances) and the hydrogen isotopic composition (δD) of apatite from five basaltic eucrites and one cumulate eucrite are reported. Apatite H2O abundanc...
Eucrites are a class of basaltic meteorites that, along with the howardites and diogenites, likely d...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the ...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...
International audienceVolatile elements play a key role in the dynamics of planetary evolution. Exte...
Eucrites, a member of the howardite-eucritediogenite (HED) group, are basaltic meteorites that are ...
Recent in situ measurements of volatiles (H2O, Cl and F), particularly in lunar and martian samples,...
Recent advancements in analytical instrumentation and techniques have enabled high-precision volatil...
Generally, terrestrial rocks, martian and chondritic meteorites exhibit a relatively narrow range in...
We conducted a petrologic study of apatite within eight unbrecciated, non-cumulate eucrites and two ...
Determining the hydrogen isotopic compositions and H2O contents of meteorites and their components i...
There have been a limited number of studies investigating the hydrogen isotopic composition of water...
The paired achondrites Graves Nunataks (GRA) 06128 and 06129 are samples of an asteroid that underwe...
We have measured the abundance and isotopic composition of water in apatites from several lunar rock...
The recent discoveries of hydrogen (H) bearing species on the lunar surface and in samples derived f...
International audienceThe initial isotopic composition of water in the Solar System is of paramount ...
Eucrites are a class of basaltic meteorites that, along with the howardites and diogenites, likely d...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the ...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...
International audienceVolatile elements play a key role in the dynamics of planetary evolution. Exte...
Eucrites, a member of the howardite-eucritediogenite (HED) group, are basaltic meteorites that are ...
Recent in situ measurements of volatiles (H2O, Cl and F), particularly in lunar and martian samples,...
Recent advancements in analytical instrumentation and techniques have enabled high-precision volatil...
Generally, terrestrial rocks, martian and chondritic meteorites exhibit a relatively narrow range in...
We conducted a petrologic study of apatite within eight unbrecciated, non-cumulate eucrites and two ...
Determining the hydrogen isotopic compositions and H2O contents of meteorites and their components i...
There have been a limited number of studies investigating the hydrogen isotopic composition of water...
The paired achondrites Graves Nunataks (GRA) 06128 and 06129 are samples of an asteroid that underwe...
We have measured the abundance and isotopic composition of water in apatites from several lunar rock...
The recent discoveries of hydrogen (H) bearing species on the lunar surface and in samples derived f...
International audienceThe initial isotopic composition of water in the Solar System is of paramount ...
Eucrites are a class of basaltic meteorites that, along with the howardites and diogenites, likely d...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the ...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...