Strength at extreme pressures (>1 Mbar or 100 GPa) and high strain rates (106-108 s-1) of materials is not well characterized. The goal of the research outlined in this thesis is to study the strength of tantalum (Ta) at these conditions. The Omega Laser in the Laboratory for Laser Energetics in Rochester, New York is used to create such extreme conditions. Targets are designed with ripples or waves on the surface, and these samples are subjected to high pressures using Omega’s high energy laser beams. In these experiments, the observational parameter is the Richtmyer-Meshkov (RM) instability in the form of ripple growth on single-mode ripples. The experimental platform used for these experiments is the “ride-along” laser compression r...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
High purity polycrystalline tantalum (Ta) was shocked through 1 to 3.5 Mbar pressures creating Richt...
High purity polycrystalline tantalum (Ta) was shocked through 1 to 3.5 Mbar pressures creating Richt...
Monocrystalline ([100], [110], [111] and [123]) and nanocrystalline (grain size ̃ 70 nm) tantalum we...
Nanocrystalline tantalum (grain size ∼70 nm) prepared by severe plastic deformation (high-pressu...
Driving a shock wave through the interface between two materials with different densities can result...
Driving a shock wave through the interface between two materials with different densities can result...
The structural and mechanical response of metals is intimately connected to phase transformations. F...
The structural and mechanical response of metals is intimately connected to phase transformations. F...
Hydrodynamic instability experiments allow access to material properties at extreme conditions where...
This research on a model bcc metal, tantalum, has three components: the study of tensile failure; de...
Solid state experiments at extreme pressures, 10-100 GPa (0.1-1 Mbar) and strain rates (10{sup 6}-10...
We report on large-scale nonequilibrium molecular dynamics simulations of shock wave compression in ...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
High purity polycrystalline tantalum (Ta) was shocked through 1 to 3.5 Mbar pressures creating Richt...
High purity polycrystalline tantalum (Ta) was shocked through 1 to 3.5 Mbar pressures creating Richt...
Monocrystalline ([100], [110], [111] and [123]) and nanocrystalline (grain size ̃ 70 nm) tantalum we...
Nanocrystalline tantalum (grain size ∼70 nm) prepared by severe plastic deformation (high-pressu...
Driving a shock wave through the interface between two materials with different densities can result...
Driving a shock wave through the interface between two materials with different densities can result...
The structural and mechanical response of metals is intimately connected to phase transformations. F...
The structural and mechanical response of metals is intimately connected to phase transformations. F...
Hydrodynamic instability experiments allow access to material properties at extreme conditions where...
This research on a model bcc metal, tantalum, has three components: the study of tensile failure; de...
Solid state experiments at extreme pressures, 10-100 GPa (0.1-1 Mbar) and strain rates (10{sup 6}-10...
We report on large-scale nonequilibrium molecular dynamics simulations of shock wave compression in ...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...
We report on large-scale non-equilibrium molecular dynamics (NEMD) simulations of shock wave compres...