© 2019, Science Press and Institute of Geochemistry, CAS and Springer-Verlag GmbH Germany, part of Springer Nature. Understanding the origin of ocean island basalts (OIB) has important bearings on Earth’s deep mantle. Although it is widely accepted that subducted oceanic crust, as a consequence of plate tectonics, contributes material to OIB’s formation, its exact fraction in OIB’s mantle source remains ambiguous largely due to uncertainties associated with existing geochemical proxies. Here we show, through theoretical calculation, that unlike many known proxies, triple oxygen isotope compositions (i.e. Δ17O) in olivine samples are not affected by crystallization and partial melting. This unique feature, therefore, allows olivine Δ17O valu...
Lithological heterogeneity is a widely accepted feature of the Earth’s mantle, with recycled crustal...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...
© 2019, Science Press and Institute of Geochemistry, CAS and Springer-Verlag GmbH Germany, part of S...
Oxygen isotope ratios in phenocrysts from ocean island basalts (OIB) can place constraints on the o...
Oxygen isotope ratios are reported for olivine phenocrysts from sixty-seven samples of ocean island ...
Oxygen isotope ratios of olivine have become a widely used tool for the study of magmatic systems, e...
The hypothesis that subducted sediments survive dehydration and/or melting in subduction zones to be...
AbstractMeasurements of Xe isotope ratios in ocean island basalts (OIB) suggest that Earth’s mantle ...
Abstract For almost fifty years, geochemists have been interpreting the clues from Pb isotopic ratio...
For almost fifty years, geochemists have been interpreting the clues from Pb isotopic ratios concern...
Oxygen isotope ratios in phenocrysts from ocean island basalts (OIB) can place constraints on the o...
The extent of lithological heterogeneity in the Earth’s convecting mantle is highly debated. Whilst ...
Based on an evaluation of major and trace element data for ocean island basalts (OIB), we demonstrat...
Recycling of oceanic crust into the deep mantle via subduction is a widely accepted mechanism for cr...
Lithological heterogeneity is a widely accepted feature of the Earth’s mantle, with recycled crustal...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...
© 2019, Science Press and Institute of Geochemistry, CAS and Springer-Verlag GmbH Germany, part of S...
Oxygen isotope ratios in phenocrysts from ocean island basalts (OIB) can place constraints on the o...
Oxygen isotope ratios are reported for olivine phenocrysts from sixty-seven samples of ocean island ...
Oxygen isotope ratios of olivine have become a widely used tool for the study of magmatic systems, e...
The hypothesis that subducted sediments survive dehydration and/or melting in subduction zones to be...
AbstractMeasurements of Xe isotope ratios in ocean island basalts (OIB) suggest that Earth’s mantle ...
Abstract For almost fifty years, geochemists have been interpreting the clues from Pb isotopic ratio...
For almost fifty years, geochemists have been interpreting the clues from Pb isotopic ratios concern...
Oxygen isotope ratios in phenocrysts from ocean island basalts (OIB) can place constraints on the o...
The extent of lithological heterogeneity in the Earth’s convecting mantle is highly debated. Whilst ...
Based on an evaluation of major and trace element data for ocean island basalts (OIB), we demonstrat...
Recycling of oceanic crust into the deep mantle via subduction is a widely accepted mechanism for cr...
Lithological heterogeneity is a widely accepted feature of the Earth’s mantle, with recycled crustal...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...
Ocean-island basalts (OIBs) provide a unique insight into the extent of lithological heterogeneity (...