Measurement of the variation of the 17O/16O and 18O/16O ratios of extraterrestrial materials has proven to be a key tool in understanding the formation and evolution of the Solar System. This chapter attempts to collate the huge data set of oxygen isotopic measurements of asteroidal material, as sampled by meteorites, in order to understand some of the processes involved in the formation of these primitive bodies and how such events have affected the oxygen isotopic ratios, ultimately offering a window back to the very origin of Solar System and its primordialoxygen isotopic heterogeneity. Oxygen is generally a major element in the gas, liquid and solid phases that have interacted throughout the evolution of the Solar System, its chemica...
The origins of the building blocks of the Solar System can be studied using the isotopic composition...
The abundances of the stable isotopes of oxygen vary in terrestrial materials in ways that can be ex...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...
Oxygen is the dominant element in our planetary system. It is therefore remarkable that it shows sub...
Oxygen isotope analysis has become an indispensable tool in the study of early Solar System processe...
From the introduction: Small planetary bodies accreted within 2.4 Myr of solar system formation [1]....
Meteorites preserve a wide range of oxygen isotopic signatures from the time of the Solar System's f...
Oxygen isotope measurements have played a key role in establishing the way the solar system has form...
On a three-isotope diagram oxygen isotopic compositions of most primitive meteorites (chondrites), c...
Oxygen isotopic compositions of the high-temperatue phases in carbonaceous chondrites define a mixin...
A number of objects in primitive meteorites have oxygen isotopic compositions that place them on a d...
Abstract. Studies of the three oxygen isotopes in chon-drite meteorites demonstrate that diverse O r...
Primitive meteorites (such as the unequilibrated ordinary chondrites) have undergone only minor ther...
Oxygen isotopic composition of our solar system is believed to have resulted from mixing of two isot...
International audienceChanges in the chemical and isotopic composition of the solar nebula with time...
The origins of the building blocks of the Solar System can be studied using the isotopic composition...
The abundances of the stable isotopes of oxygen vary in terrestrial materials in ways that can be ex...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...
Oxygen is the dominant element in our planetary system. It is therefore remarkable that it shows sub...
Oxygen isotope analysis has become an indispensable tool in the study of early Solar System processe...
From the introduction: Small planetary bodies accreted within 2.4 Myr of solar system formation [1]....
Meteorites preserve a wide range of oxygen isotopic signatures from the time of the Solar System's f...
Oxygen isotope measurements have played a key role in establishing the way the solar system has form...
On a three-isotope diagram oxygen isotopic compositions of most primitive meteorites (chondrites), c...
Oxygen isotopic compositions of the high-temperatue phases in carbonaceous chondrites define a mixin...
A number of objects in primitive meteorites have oxygen isotopic compositions that place them on a d...
Abstract. Studies of the three oxygen isotopes in chon-drite meteorites demonstrate that diverse O r...
Primitive meteorites (such as the unequilibrated ordinary chondrites) have undergone only minor ther...
Oxygen isotopic composition of our solar system is believed to have resulted from mixing of two isot...
International audienceChanges in the chemical and isotopic composition of the solar nebula with time...
The origins of the building blocks of the Solar System can be studied using the isotopic composition...
The abundances of the stable isotopes of oxygen vary in terrestrial materials in ways that can be ex...
Where there is water, there can be life. Improving our understanding of how life, as we know it, aro...