We present model calculations for cosmogenic production rates in order to quantify the potential effects of spallation and neutron capture reactions on Fe and Ni isotopes in iron meteorites. We aim to determine whether the magnitude of any cosmogenic effects on the isotopic ratios of Fe and/or Ni may hinder the search for nucleosynthetic variations in these elements or in the application of the 60Fe‐60Ni chronometer. The model shows that neutron capture reactions are the dominant source of shifts in Fe and Ni isotopic ratios and that spallation reactions are mostly negligible. The effects on 60Ni are sensitive to the Co/Ni ratio in the metal. The total galactic cosmic ray (GCR) effects on 60Ni and 64Ni can be minimized through the choice of...
Platinum isotopes are sensitive to the effects of galactic cosmic rays (GCR), which can alter isotop...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...
We present model calculations for cosmogenic production rates in order to quantify the potential eff...
We present model calculations for cosmogenic production rates in order to quantify the potential eff...
International audienceWe measured Cu isotope compositions of 12 out of the 14 known IVB iron meteori...
The origin of ¹⁸ºW excesses in iron meteorites has been a recently debated topic. Here, a suite of I...
This thesis presents high precision Ni isotope data for Fe-Ni metal with subchondritic Fe/Ni ratios ...
Iron-60 decays to 60Ni with a half-life of 1.49 Myrs such that Ni isotopic studies of iron meteorite...
The ⁵³Mn-⁵³Cr short-lived radionuclide decay system is a powerful tool to investigate the timescales...
We measured Fe and Ni isotopes in 13 iron meteorites from magmatic groups IID and IVB. Resolvable de...
We measured the He, Ne, and Ar isotopic concentrations and the 10Be, 26Al, 36Cl, and 41Ca concentrat...
Here we present the first purely physical model for cosmogenic production rates in iron meteorites w...
The sources of excess /sup 107/Ag observed in iron meteorites by Kaiser, Kelly, and Wasserburg (1980...
We measured the He, Ne, and Ar isotopic concentrations and the ¹⁰Be, ²⁶Al, ³⁶Cl, and ⁴¹Ca concentrat...
Platinum isotopes are sensitive to the effects of galactic cosmic rays (GCR), which can alter isotop...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...
We present model calculations for cosmogenic production rates in order to quantify the potential eff...
We present model calculations for cosmogenic production rates in order to quantify the potential eff...
International audienceWe measured Cu isotope compositions of 12 out of the 14 known IVB iron meteori...
The origin of ¹⁸ºW excesses in iron meteorites has been a recently debated topic. Here, a suite of I...
This thesis presents high precision Ni isotope data for Fe-Ni metal with subchondritic Fe/Ni ratios ...
Iron-60 decays to 60Ni with a half-life of 1.49 Myrs such that Ni isotopic studies of iron meteorite...
The ⁵³Mn-⁵³Cr short-lived radionuclide decay system is a powerful tool to investigate the timescales...
We measured Fe and Ni isotopes in 13 iron meteorites from magmatic groups IID and IVB. Resolvable de...
We measured the He, Ne, and Ar isotopic concentrations and the 10Be, 26Al, 36Cl, and 41Ca concentrat...
Here we present the first purely physical model for cosmogenic production rates in iron meteorites w...
The sources of excess /sup 107/Ag observed in iron meteorites by Kaiser, Kelly, and Wasserburg (1980...
We measured the He, Ne, and Ar isotopic concentrations and the ¹⁰Be, ²⁶Al, ³⁶Cl, and ⁴¹Ca concentrat...
Platinum isotopes are sensitive to the effects of galactic cosmic rays (GCR), which can alter isotop...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...
We report Ni isotopic data, for ^(58,60–62)Ni, on (1) FeNi metal and sulfides in different groups of...