We have recently carried out novel and exploratory dynamic experiments where the sample follows a prescribed thermodynamic path. In typical dynamic compression experiments, the samples are thermodynamically limited to the principal Hugoniot or quasi-isentrope. With recent developments in the functionally graded material impactor, we can prescribe and shape the applied pressure profile with similarly-shaped, non-monotonic impedance profile in the impactor. Previously inaccessible thermodynamic states beyond the quasi-isentropes and Hugoniot can now be reached in dynamic experiments with these impactors. In the light gas-gun experiments on copper reported here, we recorded the particle velocities of the Cu-LiF interfaces and employed hydrodyn...
The compression of solids by a ramped pressure pulse, as opposed to shock compression, affords the p...
Shock loading techniques are often used to determine material response along a specific pressure loa...
Materials can be experimentally characterized at high pressures and densities by sending a laser-ind...
Abstract We have recently carried out novel and exploratory dynamic experiments where the sample fol...
A transmission electron microscopy study of quasi-isentropic high-pressure loading (peak pressures b...
In recently developed laser-driven shockless compression experiments an ablatively driven shock in a...
Currently there are three platforms that offer quasi-isentropic compression or ramp-wave compression...
Solid state experiments at extreme pressures (10-100 GPa) and strain rates ({approx}10{sup 6}-10{sup...
Solid state experiments at extreme pressures, 10-100 GPa (0.1-1 Mbar) and strain rates (10{sup 6}-10...
The generation of nearly isentropic pressure‐density states in a molecular fluid sample, e.g. H_2O i...
Graded density impactors (GDIs) are used to dynamically compress materials to extreme conditions. Tw...
We describe here a series of dynamic compression experiments using impactors with specifically presc...
We have examined the feasibility of using a large‐diameter, projectile‐target impact to carry out on...
Dynamic-compression experiments on geological materials are important for understanding the composit...
In the shock physics community there is significant interest in the acquisition of accurate isentrop...
The compression of solids by a ramped pressure pulse, as opposed to shock compression, affords the p...
Shock loading techniques are often used to determine material response along a specific pressure loa...
Materials can be experimentally characterized at high pressures and densities by sending a laser-ind...
Abstract We have recently carried out novel and exploratory dynamic experiments where the sample fol...
A transmission electron microscopy study of quasi-isentropic high-pressure loading (peak pressures b...
In recently developed laser-driven shockless compression experiments an ablatively driven shock in a...
Currently there are three platforms that offer quasi-isentropic compression or ramp-wave compression...
Solid state experiments at extreme pressures (10-100 GPa) and strain rates ({approx}10{sup 6}-10{sup...
Solid state experiments at extreme pressures, 10-100 GPa (0.1-1 Mbar) and strain rates (10{sup 6}-10...
The generation of nearly isentropic pressure‐density states in a molecular fluid sample, e.g. H_2O i...
Graded density impactors (GDIs) are used to dynamically compress materials to extreme conditions. Tw...
We describe here a series of dynamic compression experiments using impactors with specifically presc...
We have examined the feasibility of using a large‐diameter, projectile‐target impact to carry out on...
Dynamic-compression experiments on geological materials are important for understanding the composit...
In the shock physics community there is significant interest in the acquisition of accurate isentrop...
The compression of solids by a ramped pressure pulse, as opposed to shock compression, affords the p...
Shock loading techniques are often used to determine material response along a specific pressure loa...
Materials can be experimentally characterized at high pressures and densities by sending a laser-ind...