AbstractNanodiamonds are stardust grains commonly found in primitive meteorites. They survived the formation of the solar system and kept their own individuality. Measurements of trace-element isotopic signatures in these grains will help understanding heavy element nucleosynthesis in massive stars and dust formation from their ejecta. We have continued previous attempts to search for stable Pt isotope anomalies in nanodiamonds via trace element accelerator mass spectrometry (TEAMS). The installation of a new injector beam line at the VERA facility allowed studying low traces of stable elements in different materials. Moreover, recent experiments showed that VERA provides the required measurement precision together with a low Pt machine bac...
Nanometer-size presolar diamonds from the Efremovka CV3 chondrite were physically separated into sev...
Oxygen isotopes provide a key tool in determining origins and links of diverse solar system material...
Isotopic anomalies are departures from the laws of mass-dependent fractionation that cannot be expla...
Nanodiamonds are stardust grains commonly found in primitive meteorites. They survived the formation...
AbstractNanodiamonds are stardust grains commonly found in primitive meteorites. They survived the f...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
Introduction: In this paper we present new results of our long-term project on investigations of met...
Primitive meteorites contain small quantities of presolar grains with highly anomalous isotopic comp...
Abundances of the titanium isotopes were determined using a new high-precision technique that shows ...
Rocky asteroids and planets display nucleosynthetic isotope variations that are attributed to the he...
Chondritic meteorites contain a diversity of particle components, i.e., chondrules and calcium-, alu...
A wide range of novel, non-traditional, stable isotope systems have been developed over the last dec...
We construct a model for the origin of the abundant nanometer diamonds found in meteorites. We inter...
Comparison of carbon isotope variations in grain size fractions of presolar diamonds separated from ...
Nanometer-size presolar diamonds from the Efremovka CV3 chondrite were physically separated into sev...
Oxygen isotopes provide a key tool in determining origins and links of diverse solar system material...
Isotopic anomalies are departures from the laws of mass-dependent fractionation that cannot be expla...
Nanodiamonds are stardust grains commonly found in primitive meteorites. They survived the formation...
AbstractNanodiamonds are stardust grains commonly found in primitive meteorites. They survived the f...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
Introduction: In this paper we present new results of our long-term project on investigations of met...
Primitive meteorites contain small quantities of presolar grains with highly anomalous isotopic comp...
Abundances of the titanium isotopes were determined using a new high-precision technique that shows ...
Rocky asteroids and planets display nucleosynthetic isotope variations that are attributed to the he...
Chondritic meteorites contain a diversity of particle components, i.e., chondrules and calcium-, alu...
A wide range of novel, non-traditional, stable isotope systems have been developed over the last dec...
We construct a model for the origin of the abundant nanometer diamonds found in meteorites. We inter...
Comparison of carbon isotope variations in grain size fractions of presolar diamonds separated from ...
Nanometer-size presolar diamonds from the Efremovka CV3 chondrite were physically separated into sev...
Oxygen isotopes provide a key tool in determining origins and links of diverse solar system material...
Isotopic anomalies are departures from the laws of mass-dependent fractionation that cannot be expla...