Large igneous province subduction is a rare process on Earth. A modern example is the subduction of the oceanic Hikurangi Plateau beneath the southern Kermadec arc, offshore New Zealand. This segment of the arc has the largest total lava volume erupted and the highest volcano density of the entire Kermadec arc. Here we show that Kermadec arc lavas south of ∼32°S have elevated Pb and Sr and low Nd isotope ratios, which argues, together with increasing seafloor depth, forearc retreat and crustal thinning, for initial Hikurangi Plateau-Kermadec arc collision ∼250 km north of its present position. The combined data set indicates that a much larger portion of the Hikurangi Plateau (the missing Ontong Java Nui piece) than previously believed has ...
Trace element and Th, Sr and Pb isotope data for young lavas from the Tonga-Kermadec arc in the sout...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Little is known about the effects that subducting an oceanic large igneous province (LIP) has on the...
Little is known about the effects that subducting an oceanic large igneous province (LIP) has on the...
International audienceThe southern Kermadec-Hikurangi convergent margin, east of New Zealand, accomm...
The southern Kermadec-Hikurangi convergent margin, east of New Zealand, accommodates the oblique sub...
The central part of the 2500-km long Tonga-Kermadec Trench is characterized by the subduction of the...
Here we present the first radiometric age data and a comprehensive geochemical data set (including m...
Oceanic plateaus and continental flood basalts, collectively referred to as large igneous provinces ...
The 2,500-km Kermadec-Tonga arc is the longest submarine arc on the planet. Here, we report on the s...
The Ontong Java, Manihiki, and Shatsky oceanic plateaus are among the Earth’s largest igneous provin...
The Ontong Java, Manihiki, and Shatsky oceanic plateaus are among the Earth\u27s largest igneous pro...
New trace element and Sr, Nd, and Pb isotope data for lavas from the active Tonga-Kermadec arc in th...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Trace element and Th, Sr and Pb isotope data for young lavas from the Tonga-Kermadec arc in the sout...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Little is known about the effects that subducting an oceanic large igneous province (LIP) has on the...
Little is known about the effects that subducting an oceanic large igneous province (LIP) has on the...
International audienceThe southern Kermadec-Hikurangi convergent margin, east of New Zealand, accomm...
The southern Kermadec-Hikurangi convergent margin, east of New Zealand, accommodates the oblique sub...
The central part of the 2500-km long Tonga-Kermadec Trench is characterized by the subduction of the...
Here we present the first radiometric age data and a comprehensive geochemical data set (including m...
Oceanic plateaus and continental flood basalts, collectively referred to as large igneous provinces ...
The 2,500-km Kermadec-Tonga arc is the longest submarine arc on the planet. Here, we report on the s...
The Ontong Java, Manihiki, and Shatsky oceanic plateaus are among the Earth’s largest igneous provin...
The Ontong Java, Manihiki, and Shatsky oceanic plateaus are among the Earth\u27s largest igneous pro...
New trace element and Sr, Nd, and Pb isotope data for lavas from the active Tonga-Kermadec arc in th...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Trace element and Th, Sr and Pb isotope data for young lavas from the Tonga-Kermadec arc in the sout...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...
Oceanic plateaus form by mantle processes distinct from those forming oceanic crust at divergent pla...