At the core of many Earth-scale processes is the question of what the deep mantle is made of. The only direct samples from such extreme depths are diamonds and their inclusions. It is commonly assumed that these inclusions reflect ambient mantle or are syngenetic with diamond, but these assumptions are rarely tested. We have studied inclusion-host growth relationships in two potentially superdeep diamonds from Juina (Brazil) containing nine inclusions of Fe-rich (X-Fe approximate to 0.33 to >= 0.64) ferropericlase-magnesiowustite (FM) by X-ray diffractometry, X-ray tomography, cathodoluminescence, electron backscatter diffraction, and electron microprobe analysis. The inclusions share a common [112] zone axis with their diamonds and have...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth's mantle...
Experiments on compositions along the join MgO–NaA3+Si2O6 (A=Al, Cr, Fe3+) show that sodium can be i...
Super-deep diamonds are believed to have formed at depths of at least 300 km depth (Harte, 2010). A ...
At the core of many Earth-scale processes is the question of what the deep mantle is made of. The on...
Ferropericlase [(Mg,Fe)O] is one of the major constituents of Earth’s lower mantle and the most abun...
At the core of many Earth-scale processes is the question of what the deep mantle is made of. The on...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth’s mantle...
Ferropericlase [(Mg,Fe)O] is a common oxide found as inclusions in diamonds considered to be of lowe...
Ferropericlase [(Mg,Fe)O] is a common oxide found as inclusions in diamonds considered to be of lowe...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth's de...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth's de...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth’s de...
Super-deep diamonds are believed to have formed at depths of at least 300 km depth (Harte, 2010). A ...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth's mantle...
Experiments on compositions along the join MgO–NaA3+Si2O6 (A=Al, Cr, Fe3+) show that sodium can be i...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth's mantle...
Experiments on compositions along the join MgO–NaA3+Si2O6 (A=Al, Cr, Fe3+) show that sodium can be i...
Super-deep diamonds are believed to have formed at depths of at least 300 km depth (Harte, 2010). A ...
At the core of many Earth-scale processes is the question of what the deep mantle is made of. The on...
Ferropericlase [(Mg,Fe)O] is one of the major constituents of Earth’s lower mantle and the most abun...
At the core of many Earth-scale processes is the question of what the deep mantle is made of. The on...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth’s mantle...
Ferropericlase [(Mg,Fe)O] is a common oxide found as inclusions in diamonds considered to be of lowe...
Ferropericlase [(Mg,Fe)O] is a common oxide found as inclusions in diamonds considered to be of lowe...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth's de...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth's de...
Super-deep diamonds and their mineral inclusions preserve very precious information about Earth’s de...
Super-deep diamonds are believed to have formed at depths of at least 300 km depth (Harte, 2010). A ...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth's mantle...
Experiments on compositions along the join MgO–NaA3+Si2O6 (A=Al, Cr, Fe3+) show that sodium can be i...
Super-deep diamonds (SDDs) are those that form at depths between ~300 and ~1000 km in Earth's mantle...
Experiments on compositions along the join MgO–NaA3+Si2O6 (A=Al, Cr, Fe3+) show that sodium can be i...
Super-deep diamonds are believed to have formed at depths of at least 300 km depth (Harte, 2010). A ...