The mantle is the most voluminous part of the Earth. However, mantle petrologists usually have to rely on indirect geophysical methods or on material found ex situ. In this review paper, we point out the in-situ existence of oceanic core complexes (OCCs), which provide large exposures of mantle and lower crustal rocks on the seafloor on detachment fault footwalls at slow-spreading ridges. OCCs are a common structure in oceanic crust architecture of slow-spreading ridges. At least 172 OCCs have been identified so far and we can expect to discover hundreds of new OCCs as more detailed mapping takes place. Thirty-two of the thirty-nine OCCs that have been sampled to date contain peridotites. Moreover, peridotites dominate in the plutonic...
Petological constitution of the upper mantle beneath the ocean floor has been poorly known except fo...
AbstractUltraslow spreading at mid-ocean ridges limits melting due to on-axis conductive cooling, le...
AbstractAbyssal peridotites are ultramafic rocks collected from mid-ocean ridges that are the residu...
The mantle is the most voluminous part of the Earth. However, mantle petrologists usually have to re...
Ocean Drilling Program (ODP) Leg 147 recently drilled at Site 895 in Hess Deep (eastern Equatorial P...
IODP Expedition 304/305 Science Party 2007International audienceOceanic core complexes expose gabbro...
Oceanic core complexes expose gabbroic rocks on the seafloor via detachment faulting, often associat...
Oceanic core complexes expose gabbroic rocks on the seafl oor via detachment faulting, often associa...
Peridotite samples recovered from IODP Site U1309 at the Atlantis Massif in the Mid-Atlantic Ridge w...
The Godzilla Megamullion, located in the Parece Vela Backarc Basin of the Izu–Bonin–Mariana (IBM) sy...
Serpentinised spinel harzburgites to orthopyroxene-rich spinel dunites recovered during the Ocean Dr...
[1] Long-lived detachment faults at mid-ocean ridges exhume deep-seated rocks to form oceanic core c...
International audienceUltraslow spreading at mid-ocean ridges limits melting due to on-axis conducti...
Kane Megamullion, an oceanic core complex near the Mid-Atlantic Ridge (MAR) abutting the Kane Transf...
Petological constitution of the upper mantle beneath the ocean floor has been poorly known except fo...
AbstractUltraslow spreading at mid-ocean ridges limits melting due to on-axis conductive cooling, le...
AbstractAbyssal peridotites are ultramafic rocks collected from mid-ocean ridges that are the residu...
The mantle is the most voluminous part of the Earth. However, mantle petrologists usually have to re...
Ocean Drilling Program (ODP) Leg 147 recently drilled at Site 895 in Hess Deep (eastern Equatorial P...
IODP Expedition 304/305 Science Party 2007International audienceOceanic core complexes expose gabbro...
Oceanic core complexes expose gabbroic rocks on the seafloor via detachment faulting, often associat...
Oceanic core complexes expose gabbroic rocks on the seafl oor via detachment faulting, often associa...
Peridotite samples recovered from IODP Site U1309 at the Atlantis Massif in the Mid-Atlantic Ridge w...
The Godzilla Megamullion, located in the Parece Vela Backarc Basin of the Izu–Bonin–Mariana (IBM) sy...
Serpentinised spinel harzburgites to orthopyroxene-rich spinel dunites recovered during the Ocean Dr...
[1] Long-lived detachment faults at mid-ocean ridges exhume deep-seated rocks to form oceanic core c...
International audienceUltraslow spreading at mid-ocean ridges limits melting due to on-axis conducti...
Kane Megamullion, an oceanic core complex near the Mid-Atlantic Ridge (MAR) abutting the Kane Transf...
Petological constitution of the upper mantle beneath the ocean floor has been poorly known except fo...
AbstractUltraslow spreading at mid-ocean ridges limits melting due to on-axis conductive cooling, le...
AbstractAbyssal peridotites are ultramafic rocks collected from mid-ocean ridges that are the residu...