The phase diagram and the possible stable structures of molecular solid hydrogen are intriguing physical phenomena that still remain to be fully unveiled. Particularly, its transition to metallic hydrogen at high pressures is currently a hot topic of discussion. This letter reports a simulation method that links the ab initio, quantum molecular dynamic and mechanical properties calculations to study the relation between the structural phase transitions and sound velocity in solid molecular hydrogen. The pressure range studied is from 0.1 GPa to 180 GPa, at 15 K temperature, thereby our aim is to simulate the conditions of manufacture, handling and early stages of compression of the target fuel used in confinement inertial fusion. Phase I de...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Hydrogen isotopes play a critical role both in inertial and magnetic confinement Nuclear Fusion. Sin...
The melting temperature of solid hydrogen drops with pressure above similar to 65 GPa, suggesting th...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
The high-pressure thermodynamic properties of molecular and metallic hydrogen are calculated from th...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
Hydrogen, being the first element in the periodic table, has the simplest electronic structure of an...
We use the diffusion quantum Monte Carlo (DMC) method to calculate the ground-state phase diagram of...
We have mapped the molecular-atomic transition in liquid hydrogen using first principles molecular d...
The study of the high pressure phase diagram of hydrogen has continued with renewed effort for about...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
The study of the high pressure phase diagram of hydrogen has continued with renewed effort for about...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Hydrogen isotopes play a critical role both in inertial and magnetic confinement Nuclear Fusion. Sin...
The melting temperature of solid hydrogen drops with pressure above similar to 65 GPa, suggesting th...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
The high-pressure thermodynamic properties of molecular and metallic hydrogen are calculated from th...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
Hydrogen, being the first element in the periodic table, has the simplest electronic structure of an...
We use the diffusion quantum Monte Carlo (DMC) method to calculate the ground-state phase diagram of...
We have mapped the molecular-atomic transition in liquid hydrogen using first principles molecular d...
The study of the high pressure phase diagram of hydrogen has continued with renewed effort for about...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
The study of the high pressure phase diagram of hydrogen has continued with renewed effort for about...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Solid molecular hydrogen exhibits a rich variety of unique properties, including insulator-to-metal ...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...