The response of solid matter to shock compression is complexified considerably by its strength, or its ability to withstand shear stress. Strength is challenging to measure experimentally under shock conditions and even harder to model, due to its being an extremely complicated function of the loading conditions. Our understanding of material strength and the way it manifests under dynamic loading thus remains, to a great extent, incomplete. This work presents studies of two phenomena arising from strength under the conditions of shock compression and release by means of multimillion-atom molecular dynamics simulations and femtosecond x-ray diffraction. The role of shock-induced grain interactions is first explored via simulations of elemen...
Recent advances in the ability to generate extremes of pressure and temperature in dynamic experimen...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
We present molecular dynamics simulations of shock and release in micron-scale tantalum crystals tha...
We present Non-Equilibrium Molecular Dynamics (NEMD) simulations of shock wave compression along the...
We present molecular dynamics (MD) simulations of shock and release in micron-scale tantalum crystal...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We present Non-Equilibrium Molecular Dynamics (NEMD) simulations of shock wave compression along the...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
We present molecular dynamics simulations of shock-induced plasticity and spall damage in single cry...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
We report on large-scale nonequilibrium molecular dynamics simulations of shock wave compression in ...
Recent advances in the ability to generate extremes of pressure and temperature in dynamic experimen...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
We present molecular dynamics simulations of shock and release in micron-scale tantalum crystals tha...
We present Non-Equilibrium Molecular Dynamics (NEMD) simulations of shock wave compression along the...
We present molecular dynamics (MD) simulations of shock and release in micron-scale tantalum crystal...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We present Non-Equilibrium Molecular Dynamics (NEMD) simulations of shock wave compression along the...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
We present molecular dynamics simulations of shock-induced plasticity and spall damage in single cry...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
We report on large-scale nonequilibrium molecular dynamics simulations of shock wave compression in ...
Recent advances in the ability to generate extremes of pressure and temperature in dynamic experimen...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...