Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of the constituent materials. In particular, how much heat solids can sustain before melting under pressure is key to determining a planet’s internal structure and evolution. We report laser-driven shock experiments on fused silica, α-quartz, and stishovite yielding equation-of-state and electronic conductivity data at unprecedented conditions and showing that the melting temperature of SiO2 rises to 8300 K at a pressure of 500 gigapascals, comparable to the core-mantle boundary conditions for a 5–Earth mass super-Earth. We show that mantle silicates and core metal have comparable melting temperatures above 500 to 700 gigapascals, which could favo...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
The physical and chemical properties of materials are profoundly affected by highpressure and temper...
Shock processing via impacts is a common occurrence during planet formation and evolution. Character...
The physical and chemical properties of materials are profoundly affected by high pressure and tempe...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
The physical and chemical properties of materials are profoundly affected by highpressure and temper...
Shock processing via impacts is a common occurrence during planet formation and evolution. Character...
The physical and chemical properties of materials are profoundly affected by high pressure and tempe...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
The temperature of SiO_2 in high-pressure shock states has been measured for samples of single-cryst...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...
International audienceUnderstanding materials behaviour under extreme thermodynamic conditions is fu...