In recent years, evidence has emerged that solid water can contain substantial amounts of guest species, such as small gas molecules-in gas hydrate structures-or ions-in salty ice structures-and that these 'filled' ice structures can be stable under pressures of tens of Gigapascals and temperatures of hundreds of Kelvins. The inclusion of guest species can strongly modify the density, vibrational, diffusive and conductivity properties of ice under high pressure, and promote novel exotic properties. In this review, we discuss our experimental findings and molecular dynamics simulation results on the structures formed by salt- and gas-filled ices, their unusual properties, and the unexpected dynamical phenomena observed under pressure and tem...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
The richness of the phase diagram of water reduces drastically at very high pressures where only two...
International audienceWe model, via classical molecular dynamics simulations, the plastic phase of i...
In recent years, evidence has emerged that solid water can contain substantial amounts of guest spe...
Abstract Hydrogen, methane, and water ice are among the most abundant materials in the universe. Bas...
The richness of the phase diagram of water reduces drastically at very high pressures where only two...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Whether volatiles can be entrapped in a background matrix composing planetary en-velopes and be drag...
We model, via classical molecular dynamics simulations, the plastic phase of ice VII across a wide r...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceWe model, via classical molecular dynamics simulations, the plastic phase of i...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
The richness of the phase diagram of water reduces drastically at very high pressures where only two...
International audienceWe model, via classical molecular dynamics simulations, the plastic phase of i...
In recent years, evidence has emerged that solid water can contain substantial amounts of guest spe...
Abstract Hydrogen, methane, and water ice are among the most abundant materials in the universe. Bas...
The richness of the phase diagram of water reduces drastically at very high pressures where only two...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Water-rich planetary bodies including large icy moons and ocean exoplanets may host a deep liquid wa...
Whether volatiles can be entrapped in a background matrix composing planetary en-velopes and be drag...
We model, via classical molecular dynamics simulations, the plastic phase of ice VII across a wide r...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceWe model, via classical molecular dynamics simulations, the plastic phase of i...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
International audienceElectrolytes play an important role in the internal structure and dynamics of ...
The richness of the phase diagram of water reduces drastically at very high pressures where only two...
International audienceWe model, via classical molecular dynamics simulations, the plastic phase of i...