We compare literature data for the isotopic ratios of Zr, Sr, and Ba from analysis of single meteoritic stardust silicon carbide (SiC) grains to new predictions for the slow neutron-capture process (the s process) in metal-rich asymptotic giant branch (AGB) stars. The models have initial metallicities (solar) and (twice-solar) and initial masses 2–4.5 , selected such as the condition C/O > 1 for the formation of SiC is achieved. Because of the higher Fe abundance, the twice-solar metallicity models result in a lower number of total free neutrons released by the 13C(,n)16O neutron source. Furthermore, the highest-mass (4–4.5 ) AGB stars of twice-solar metallicity present a milder activation of the 22Ne(,n)25Mg neutron source than their sol...
We report the Ti isotopic compositions of 8 mainstream, 22 Y, 9 Z, and 26 AB presolar SiC grains fro...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic Giant Branch (AGB) stars efficiently pollute the interstellar medium, producing both ligh...
Stardust grains that originated in ancient stars and supernovae are recovered from meteorites and ca...
International audienceThe vast majority (≳90%) of presolar SiC grains identified in primitive meteor...
Presolar grains are microscopic dust grains that formed in the stellar winds or explosions of ancien...
Presolar grains are microscopic dust grains that formed in the stellar winds or explosions of ancien...
The strontium, zirconium, molybdenum, and barium isotopic compositions predicted in the mass-losing ...
Presolar SiC grains formed around Asymptotic Giant Branch (AGB) stars during their carbon-rich phase...
Presolar SiCgrains of the mainstream,Y, and Z type are believed to come fromcarbon stars.We compared...
We report Mo isotopic compositions of 37 presolar SiC grains of types Y (19) and Z (18), rare types ...
We report the first tungsten isotopic measurements in stardust silicon carbide (SiC) grains recovere...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
A suite of morphologically distinctive silicon carbide (SiC) grains from the Orgueil and Murchison c...
SiC mainstream grains are presolar grains believed to form in the envelopes of carbon rich asymptoti...
We report the Ti isotopic compositions of 8 mainstream, 22 Y, 9 Z, and 26 AB presolar SiC grains fro...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic Giant Branch (AGB) stars efficiently pollute the interstellar medium, producing both ligh...
Stardust grains that originated in ancient stars and supernovae are recovered from meteorites and ca...
International audienceThe vast majority (≳90%) of presolar SiC grains identified in primitive meteor...
Presolar grains are microscopic dust grains that formed in the stellar winds or explosions of ancien...
Presolar grains are microscopic dust grains that formed in the stellar winds or explosions of ancien...
The strontium, zirconium, molybdenum, and barium isotopic compositions predicted in the mass-losing ...
Presolar SiC grains formed around Asymptotic Giant Branch (AGB) stars during their carbon-rich phase...
Presolar SiCgrains of the mainstream,Y, and Z type are believed to come fromcarbon stars.We compared...
We report Mo isotopic compositions of 37 presolar SiC grains of types Y (19) and Z (18), rare types ...
We report the first tungsten isotopic measurements in stardust silicon carbide (SiC) grains recovere...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
A suite of morphologically distinctive silicon carbide (SiC) grains from the Orgueil and Murchison c...
SiC mainstream grains are presolar grains believed to form in the envelopes of carbon rich asymptoti...
We report the Ti isotopic compositions of 8 mainstream, 22 Y, 9 Z, and 26 AB presolar SiC grains fro...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic Giant Branch (AGB) stars efficiently pollute the interstellar medium, producing both ligh...