Pyroxenites are an essential component in petrological and geochemical models for melt formation at mid-ocean ridges and ocean islands. Despite their rarity, their origin has been widely discussed and various processes have been invoked for their formation. Here, we present a detailed study of the microtextures and major, minor and trace element compositions of relatively fresh pyroxenites and associated harzburgites from the ultraslow-spreading Lena Trough, Arctic Ocean. Microtextural and geochemical characteristics suggest an origin by magmatic assimilation-fractional crystallization with a high ratio of mass crystallized to mass assimilated. The major element compositions of pyroxenes suggest that this process occurred at high pressures ...
Magma formation at ocean ridges is the primary process that produces the large scale lithologic and ...
Samples of peridotites and pyroxenites from the mantle and lower crustal sections of the Leka Ophiol...
To better assess the potential role of pyroxenites in basalt generation at mid-ocean ridges, we perf...
Pyroxenites are an essential component in petrological and geochemical models for melt formation at ...
Based on previous and new results on partial melting experiments of pyroxenites at high pressure, we...
Pyroxenites are diffuse in fertile mantle peridotites and considered an important component in the m...
AbstractUltraslow spreading at mid-ocean ridges limits melting due to on-axis conductive cooling, le...
International audienceUltraslow spreading at mid-ocean ridges limits melting due to on-axis conducti...
The global mid-ocean ridge system is the site of 75% of Earth’s volcanism. Whilst mid-ocean ridges h...
After travelling in Earth\u2019s interior for up to billions of years, recycled material once inject...
Petrologic evolution under mid-ocean ridges (MORs) has long been a major means to study the complex ...
The global mid-ocean ridge system is the most extensive magmatic system on our planet and is the sit...
Magma formation at ocean ridges is the primary process that produces the large scale lithologic and ...
Samples of peridotites and pyroxenites from the mantle and lower crustal sections of the Leka Ophiol...
To better assess the potential role of pyroxenites in basalt generation at mid-ocean ridges, we perf...
Pyroxenites are an essential component in petrological and geochemical models for melt formation at ...
Based on previous and new results on partial melting experiments of pyroxenites at high pressure, we...
Pyroxenites are diffuse in fertile mantle peridotites and considered an important component in the m...
AbstractUltraslow spreading at mid-ocean ridges limits melting due to on-axis conductive cooling, le...
International audienceUltraslow spreading at mid-ocean ridges limits melting due to on-axis conducti...
The global mid-ocean ridge system is the site of 75% of Earth’s volcanism. Whilst mid-ocean ridges h...
After travelling in Earth\u2019s interior for up to billions of years, recycled material once inject...
Petrologic evolution under mid-ocean ridges (MORs) has long been a major means to study the complex ...
The global mid-ocean ridge system is the most extensive magmatic system on our planet and is the sit...
Magma formation at ocean ridges is the primary process that produces the large scale lithologic and ...
Samples of peridotites and pyroxenites from the mantle and lower crustal sections of the Leka Ophiol...
To better assess the potential role of pyroxenites in basalt generation at mid-ocean ridges, we perf...