Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by several authors. For the first time, independent investigations of samples from two different geological archives yielded conclusive data for a further, much younger 60Fe influx onto Earth. The origin of this influx is currently unclear because of the limited data available, the lack of consistent astrophysical models and a gap in the data between 50 kyr and 1 Myr. Possible astrophysical scenarios will be discussed with respect to the different influx patterns from different sources and a measurement to close the gap will be proposed
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
Deep-sea archives all over the world show an enhanced concentration of the radionuclide 60Fe, isolat...
Context. The discovery of radionuclides like 60Fe with half-lives of million years in deep-sea crust...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Nuclides synthesized in massive stars are ejected into space viastellar winds and supernova explosio...
International audienceThe radioactive isotope 60Fe (T 1/2 = 1.5 Myr) was present in the early solar ...
International audienceThe radioactive isotope 60Fe (T 1/2 = 1.5 Myr) was present in the early solar ...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
The signature of 60Fe in deep-sea crusts indicates that one or more supernovae exploded in the solar...
There is a wealth of data on live, undecayed 60Fe ($t_{1/2} = 2.6 \ \rm Myr$) in deep-sea deposits, ...
Establishing the origin of short-lived radionuclides (SLRs) with half-lives ≤100 Myr has important i...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
Abstract. The discovery that the short-lived radionucleide 60Fe was present in the oldest meteorites...
An 60Fe peak in a deep-sea FeMn crust has been interpreted as due to the signature left by the eject...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
Deep-sea archives all over the world show an enhanced concentration of the radionuclide 60Fe, isolat...
Context. The discovery of radionuclides like 60Fe with half-lives of million years in deep-sea crust...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Over the last 20 years, evidence for a 2 Myr old supernova 60Fe influx onto Earth was provided by se...
Nuclides synthesized in massive stars are ejected into space viastellar winds and supernova explosio...
International audienceThe radioactive isotope 60Fe (T 1/2 = 1.5 Myr) was present in the early solar ...
International audienceThe radioactive isotope 60Fe (T 1/2 = 1.5 Myr) was present in the early solar ...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
The signature of 60Fe in deep-sea crusts indicates that one or more supernovae exploded in the solar...
There is a wealth of data on live, undecayed 60Fe ($t_{1/2} = 2.6 \ \rm Myr$) in deep-sea deposits, ...
Establishing the origin of short-lived radionuclides (SLRs) with half-lives ≤100 Myr has important i...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
Abstract. The discovery that the short-lived radionucleide 60Fe was present in the oldest meteorites...
An 60Fe peak in a deep-sea FeMn crust has been interpreted as due to the signature left by the eject...
Live $^{60}$Fe has recently been reported in a deep-ocean ferromanganese crust. Analysis of the isot...
Deep-sea archives all over the world show an enhanced concentration of the radionuclide 60Fe, isolat...
Context. The discovery of radionuclides like 60Fe with half-lives of million years in deep-sea crust...