The discovery of live 60Fe in a deep-sea crust with proposed interstellar origin followed by evidence for elevated interplanetary 3He in the same crust raised the question on how to unambiguously identify the true production site of the identified 60Fe. Here, we show the implementation of the dyadic radionuclide system 60Fe / 53Mn to serve as a tool for the identification of surplus interstellar 60Fe over interplanetary production. The recent updates in experimental 60Fe and 53Mn data from iron meteorites as well as in production rate models confirm the validity and robustness of this dyadic system for future applications
The observation of gamma rays associated with the decay of {sup 26}Al and {sup 60}Fe can provide imp...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
The discovery of live 60Fe in a deep-sea crust with proposed interstellar origin followed by evidenc...
We measured specific activities of the long-lived cosmogenic radionuclides 60Fe in 28 iron meteorite...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Half of the chemical elements heavier than iron are produced by the rapid neutron capture process (r...
Cosmic-ray-produced (cosmogenic) nuclides were studied in fragments of the Brenham pallasite, a larg...
Among extinct radioactivities present in meteorites, 60Fe (t1/2 1:49 Myr) plays a key role as a hig...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
Nuclides synthesized in massive stars are ejected into space viastellar winds and supernova explosio...
International audienceShort-lived radionuclides (e.g., (26)Al, (53)Mn, (60)Fe, (182)Hf) are widely u...
International audienceShort-lived radionuclides (e.g., (26)Al, (53)Mn, (60)Fe, (182)Hf) are widely u...
We measured specific activities of the long‐lived cosmogenic radionuclides ⁶⁰Fe in 28 iron meteorite...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
The observation of gamma rays associated with the decay of {sup 26}Al and {sup 60}Fe can provide imp...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
The discovery of live 60Fe in a deep-sea crust with proposed interstellar origin followed by evidenc...
We measured specific activities of the long-lived cosmogenic radionuclides 60Fe in 28 iron meteorite...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Half of the chemical elements heavier than iron are produced by the rapid neutron capture process (r...
Cosmic-ray-produced (cosmogenic) nuclides were studied in fragments of the Brenham pallasite, a larg...
Among extinct radioactivities present in meteorites, 60Fe (t1/2 1:49 Myr) plays a key role as a hig...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
Nuclides synthesized in massive stars are ejected into space viastellar winds and supernova explosio...
International audienceShort-lived radionuclides (e.g., (26)Al, (53)Mn, (60)Fe, (182)Hf) are widely u...
International audienceShort-lived radionuclides (e.g., (26)Al, (53)Mn, (60)Fe, (182)Hf) are widely u...
We measured specific activities of the long‐lived cosmogenic radionuclides ⁶⁰Fe in 28 iron meteorite...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...
The observation of gamma rays associated with the decay of {sup 26}Al and {sup 60}Fe can provide imp...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
The radionuclide Fe-60 has been of great interest to the nuclear astrophysics community for over a d...