The stability, structure, and properties of carbonate minerals at lower mantle conditions have significant impact on our understanding of the global carbon cycle and the composition of the interior of the Earth. In recent years there has been significant interest in the behavior of carbonates at lower mantle conditions, specifically in their carbon hybridization, which has relevance for the storage of carbon within the deep mantle. Using high-pressure synchrotron x-ray diffraction in a diamond anvil cell coupled with direct laser heating of CaCO3 using a CO2 laser, we identify a crystalline phase of the material above 40 GPa—corresponding to a lower mantle depth of around 1000 km—which has first been predicted by ab initio structure predict...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
Calcium carbonate (CaCO3) significantly affects the properties of upper mantle and plays a key role ...
The stability, structure, and properties of carbonate minerals at lower mantle conditions have signi...
The stability, structure, and properties of carbonate minerals at lower mantle conditions have signi...
The stability, structure and properties of carbonate minerals at lower mantle conditions has signifi...
Ab initio random structure searching (AIRSS) and density functional theory methods are used to predi...
With the current state of art of experimental facilities, we conducted studies on carbonates at the ...
Calcite, CaCO 3, undergoes several high pressure phase transitions. We report here the crystal struc...
The importance for the global carbon cycle, the <i>P</i>–<i>T</i> phase diagram of CaCO<sub>3</sub> ...
The nature and extent of Earth’s deep carbon cycle remains uncertain. This chapter considers high-pr...
CaC$_2$O$_5$-$I\bar{4}$2d was obtained by reacting CO$_2$ and CaCO$_3$ at lower Earth mantle pressur...
The high-pressure CaCO3 phase diagram has been the most extensively studied within the carbonates gr...
Carbon is recycled into the deep Earth mainly as carbonates, therefore stability of carbonates durin...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
Calcium carbonate (CaCO3) significantly affects the properties of upper mantle and plays a key role ...
The stability, structure, and properties of carbonate minerals at lower mantle conditions have signi...
The stability, structure, and properties of carbonate minerals at lower mantle conditions have signi...
The stability, structure and properties of carbonate minerals at lower mantle conditions has signifi...
Ab initio random structure searching (AIRSS) and density functional theory methods are used to predi...
With the current state of art of experimental facilities, we conducted studies on carbonates at the ...
Calcite, CaCO 3, undergoes several high pressure phase transitions. We report here the crystal struc...
The importance for the global carbon cycle, the <i>P</i>–<i>T</i> phase diagram of CaCO<sub>3</sub> ...
The nature and extent of Earth’s deep carbon cycle remains uncertain. This chapter considers high-pr...
CaC$_2$O$_5$-$I\bar{4}$2d was obtained by reacting CO$_2$ and CaCO$_3$ at lower Earth mantle pressur...
The high-pressure CaCO3 phase diagram has been the most extensively studied within the carbonates gr...
Carbon is recycled into the deep Earth mainly as carbonates, therefore stability of carbonates durin...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
Calcium carbonate (CaCO3) significantly affects the properties of upper mantle and plays a key role ...