Core formation in planetesimals can, in principle, be dated using the short-lived 182Hf-182W chronometer. However, it has been predicted that burnout and production of W isotopes by nuclear reactions can substantially modify the compositions in iron meteorites when exposed for several hundred million years (Myr) to galactic cosmic-rays. This may severely limit the use of the Hf-W system for determining chronologies of metal segregation as recorded in iron meteorites. Here we present the first experimental evidence of cosmogenic effects on W isotopes in two magmatic iron meteorites, Carbo (IID) and Grant (IIIAB). The 182W/184W ratio near the pre-atmospheric centre of the meteorites is lower by ∼ 0.5 epsilon compared to values near the pre-at...
We have investigated nucleosynthetic Mo isotope anomalies in 38 different bulk iron meteorites from ...
Use of the extinct 182 Hf- 182 W chronometer to constrain the timing of planetary accretion and diff...
THE accretion of the Earth and Moon within the solar nebula is thought(1-3) to have taken 50 to 100 ...
High-precision W isotopic compositions are presented for 35 iron meteorites from 7 magmatic groups (...
An obstacle for establishing the chronology of iron meteorite formation using 182Hf-182W systematics...
The origin of ¹⁸ºW excesses in iron meteorites has been a recently debated topic. Here, a suite of I...
Tungsten isotope compositions of magmatic iron meteorites yield ages of differentiation that are wit...
We measured tungsten (W) isotopes in 23 iron meteorites and the metal phase of the CB chondrite Gujb...
Excesses and deficiencies in 182W in meteorites and lunar samples relative to the terrestrial 182W a...
We measured the He, Ne, and Ar isotopic concentrations and the ¹⁰Be, ²⁶Al, ³⁶Cl, and ⁴¹Ca concentrat...
We measured the He, Ne, and Ar isotopic concentrations and the 10Be, 26Al, 36Cl, and 41Ca concentrat...
New, high-precision W isotope data on iron meteorites are presented that provide important constrain...
Platinum isotopes are sensitive to the effects of galactic cosmic rays (GCR), which can alter isotop...
International audienceWe measured Cu isotope compositions of 12 out of the 14 known IVB iron meteori...
The ⁵³Mn-⁵³Cr short-lived radionuclide decay system is a powerful tool to investigate the timescales...
We have investigated nucleosynthetic Mo isotope anomalies in 38 different bulk iron meteorites from ...
Use of the extinct 182 Hf- 182 W chronometer to constrain the timing of planetary accretion and diff...
THE accretion of the Earth and Moon within the solar nebula is thought(1-3) to have taken 50 to 100 ...
High-precision W isotopic compositions are presented for 35 iron meteorites from 7 magmatic groups (...
An obstacle for establishing the chronology of iron meteorite formation using 182Hf-182W systematics...
The origin of ¹⁸ºW excesses in iron meteorites has been a recently debated topic. Here, a suite of I...
Tungsten isotope compositions of magmatic iron meteorites yield ages of differentiation that are wit...
We measured tungsten (W) isotopes in 23 iron meteorites and the metal phase of the CB chondrite Gujb...
Excesses and deficiencies in 182W in meteorites and lunar samples relative to the terrestrial 182W a...
We measured the He, Ne, and Ar isotopic concentrations and the ¹⁰Be, ²⁶Al, ³⁶Cl, and ⁴¹Ca concentrat...
We measured the He, Ne, and Ar isotopic concentrations and the 10Be, 26Al, 36Cl, and 41Ca concentrat...
New, high-precision W isotope data on iron meteorites are presented that provide important constrain...
Platinum isotopes are sensitive to the effects of galactic cosmic rays (GCR), which can alter isotop...
International audienceWe measured Cu isotope compositions of 12 out of the 14 known IVB iron meteori...
The ⁵³Mn-⁵³Cr short-lived radionuclide decay system is a powerful tool to investigate the timescales...
We have investigated nucleosynthetic Mo isotope anomalies in 38 different bulk iron meteorites from ...
Use of the extinct 182 Hf- 182 W chronometer to constrain the timing of planetary accretion and diff...
THE accretion of the Earth and Moon within the solar nebula is thought(1-3) to have taken 50 to 100 ...