We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the pressure range 0 - 400 GPa, using density functional theory (DFT) in the projector augmented wave (PAW) implementation. We use the "reference coexistence" technique to overcome uncertainties inherent in earlier DFT calculations of the melting curve of Mo. Our calculated melting curve agrees well with experiment at ambient pressure and is consistent with shock data at high pressure, but does not agree with the high pressure melting curve from static compression experiments. Our calculated P (V) and T (P) Hugoniot relations agree well with shock measurements. We use calculations of phonon dispersion relations as a function of pressure to eliminate some po...
We use first-principles techniques to reexamine the suggestion that transitions seen in high-P exper...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...
We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the pressure ra...
We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the pressure ra...
Abstract. We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the p...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0–400 GPa are repor...
The sound velocity of Mo along the Hugoniot adiabat is calculated from first principles using densit...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
We present the Hugoniots of Al, Ta, Mo and W in their solid as well as liquid phases. The liquid pha...
We use first-principles techniques to reexamine the suggestion that transitions seen in high-P exper...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...
We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the pressure ra...
We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the pressure ra...
Abstract. We report ab initio calculations of the melting curve and Hugoniot of molybdenum for the p...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0-400 GPa are repor...
Ab initio calculations of the melting curve of molybdenum for the pressure range 0–400 GPa are repor...
The sound velocity of Mo along the Hugoniot adiabat is calculated from first principles using densit...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
Shock compression experiments on samples at elevated initial temperature provide a test of the Mie-G...
We present the Hugoniots of Al, Ta, Mo and W in their solid as well as liquid phases. The liquid pha...
We use first-principles techniques to reexamine the suggestion that transitions seen in high-P exper...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...
Shock compression data to 96 GPa for pure molybdenum, initially heated to 1400 °C, are presented. Fi...