We report O and Mg isotope compositions of presolar silicate grains which likely formed around asymptotic giant branch stars. Our grains represent the most abundant Mg-rich presolar grain group and their Mg isotope composition provides thus far missing information about the contribution of isotopically anomalous presolar dust to the Mg isotope inventory of the early Solar System. Presolar silicate grains were identified in situ, using the NanoSIMS, in the matrix of the ungrouped carbonaceous chondrite Acfer 094. O isotope compositions suggest that the presolar grains of the present study formed in the stellar winds of low mass (M <= similar to 2.2 x M-solar) red giant or asymptotic giant branch stars of close-to-solar metallicity and thus b...
We report the light to intermediate-mass element abundances as well as the oxygen, magnesium, silico...
Microscopic presolar grains extracted from primitive meteorites have extremely anomalous isotopic co...
Primitive solar system materials, namely, meteorites, interplanetary dust particles, and cometary ma...
We report O and Mg isotope compositions of presolar silicate grains which likely formed around asymp...
We report on Mg and Si isotope data of 86 presolar silicate grains identified through NanoSIMS oxyge...
We report high-resolution (<100 nm) Mg and Si isotope data of 12 presolar silicate grains (230–440 n...
Primitive Solar System materials host small amounts of refractory dust grains predating the formatio...
The discovery of presolar grains in meteorites is one of the most exciting recent developments in me...
Presolar oxide grains have been previously divided into several groups (Group 1 to 4) based on their...
Raster ion imaging of the oxygen isotopes with the NanoSIMS ion microprobe has been used to identify...
Grains of stardust that formed in stellar outflows prior to the formation of the solar system surviv...
2 We report the identification of presolar silicates (~177 ppm), presolar oxides (~11 ppm), and one ...
The majority of presolar silicate and oxide grains derive from low-mass red giant and asymptotic gia...
We report the structural and chemical analyses of six presolar silicate grains identified in situ in...
This dissertation presents the results and implications of the isotopic and elemental analyses of pr...
We report the light to intermediate-mass element abundances as well as the oxygen, magnesium, silico...
Microscopic presolar grains extracted from primitive meteorites have extremely anomalous isotopic co...
Primitive solar system materials, namely, meteorites, interplanetary dust particles, and cometary ma...
We report O and Mg isotope compositions of presolar silicate grains which likely formed around asymp...
We report on Mg and Si isotope data of 86 presolar silicate grains identified through NanoSIMS oxyge...
We report high-resolution (<100 nm) Mg and Si isotope data of 12 presolar silicate grains (230–440 n...
Primitive Solar System materials host small amounts of refractory dust grains predating the formatio...
The discovery of presolar grains in meteorites is one of the most exciting recent developments in me...
Presolar oxide grains have been previously divided into several groups (Group 1 to 4) based on their...
Raster ion imaging of the oxygen isotopes with the NanoSIMS ion microprobe has been used to identify...
Grains of stardust that formed in stellar outflows prior to the formation of the solar system surviv...
2 We report the identification of presolar silicates (~177 ppm), presolar oxides (~11 ppm), and one ...
The majority of presolar silicate and oxide grains derive from low-mass red giant and asymptotic gia...
We report the structural and chemical analyses of six presolar silicate grains identified in situ in...
This dissertation presents the results and implications of the isotopic and elemental analyses of pr...
We report the light to intermediate-mass element abundances as well as the oxygen, magnesium, silico...
Microscopic presolar grains extracted from primitive meteorites have extremely anomalous isotopic co...
Primitive solar system materials, namely, meteorites, interplanetary dust particles, and cometary ma...