Axial melt lenses sandwiched between the lower oceanic crust and the sheeted dike sequences at fast-spreading mid-ocean ridges are assumed to be the major magma source of oceanic crust accretion. According to the widely discussed "gabbro glacier'' model, the formation of the lower oceanic crust requires efficient cooling of the axial melt lens, leading to partial crystallization and crystal-melt mush subsiding down to lower crust. These processes are believed to be controlled by periodical magma replenishment and hydrothermal circulation above the melt lens. Here we quantify the cooling rate above melt lens using chemical zoning of plagioclase from hornfelsic recrystallized sheeted dikes drilled from the East Pacific at the Integrated Ocean...
International audienceMelt supply at slow-ultraslow spreading ridges is overall reduced and highly v...
The formation of new ocean lithosphere at mid-ocean ridges is a fundamental component of the plate t...
The cooling history and therefore thermal structure of oceanic lithosphere in slow-spreading environ...
Hydrothermal convection at mid-ocean ridges links the ocean's long-term chemical evolution to solid ...
Author Posting. © American Geophysical Union, 2011. This article is posted here by permission of Am...
The formation of new ocean crust at mid-ocean ridges is a fundamental component of the plate tectoni...
Thermal models of mid-ocean ridges that balance the influx of heat from magmatic sources with the re...
Oceanic detachment faults are increasingly recognised as playing an integral role in the seafloor sp...
Magmatic processes associated with oceanic crustal accretion at slow-spreading mid-oceanic ridges ar...
A new geospeedometer is developed based on the differential closures of Mg and rare earth element (R...
Successive magma batches underplate, ascend, stall and erupt along spreading ridges, building the oc...
The Superfast Spreading Crust campaign, echoing long-standing ocean lithosphere community endeavors,...
International audienceAt oceanic spreading centers, the interactions between the igneous system that...
We present experiments showing that the lower oceanic crust should melt efficiently and quickly when...
We investigate crustal accretion at mid-ocean ridges by combining crystallization pressures calculat...
International audienceMelt supply at slow-ultraslow spreading ridges is overall reduced and highly v...
The formation of new ocean lithosphere at mid-ocean ridges is a fundamental component of the plate t...
The cooling history and therefore thermal structure of oceanic lithosphere in slow-spreading environ...
Hydrothermal convection at mid-ocean ridges links the ocean's long-term chemical evolution to solid ...
Author Posting. © American Geophysical Union, 2011. This article is posted here by permission of Am...
The formation of new ocean crust at mid-ocean ridges is a fundamental component of the plate tectoni...
Thermal models of mid-ocean ridges that balance the influx of heat from magmatic sources with the re...
Oceanic detachment faults are increasingly recognised as playing an integral role in the seafloor sp...
Magmatic processes associated with oceanic crustal accretion at slow-spreading mid-oceanic ridges ar...
A new geospeedometer is developed based on the differential closures of Mg and rare earth element (R...
Successive magma batches underplate, ascend, stall and erupt along spreading ridges, building the oc...
The Superfast Spreading Crust campaign, echoing long-standing ocean lithosphere community endeavors,...
International audienceAt oceanic spreading centers, the interactions between the igneous system that...
We present experiments showing that the lower oceanic crust should melt efficiently and quickly when...
We investigate crustal accretion at mid-ocean ridges by combining crystallization pressures calculat...
International audienceMelt supply at slow-ultraslow spreading ridges is overall reduced and highly v...
The formation of new ocean lithosphere at mid-ocean ridges is a fundamental component of the plate t...
The cooling history and therefore thermal structure of oceanic lithosphere in slow-spreading environ...