A large uncertainty in the design of ignition capsules for use in the National Ignition Campaign (NIC) is the ablator equation of state. In this article, we report equation-of-state measurements for two candidate NIC ablator materials, glow-discharge polymer (GDP), and germanium-doped GDP. These materials were driven to pressures of 1 to 12 Mbar using laser-driven shock waves. Hugoniot measurements were obtained using the impedance matching technique with an α-quartz standard. This article presents the first kinematic measurements in the high-pressure fluid regime for these materials, which show to be in close agreement with Livermore equation-of-state model predictions
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceWetted-foam layers are of significant interest for inertial-confinement-fusion...
The equation of state(EOS) of polystyrene and polypropylene were measured using laser-driven shock w...
We have developed an experimental platform for the National Ignition Facility that uses spherically ...
The high pressure equations of state of materials must be accurately known for confident design, sim...
Understanding high pressure behavior materials is necessary in order to address the physical process...
High precision polystyrene equation of state data were measured using laser-driven shock waves with ...
An experiment shows that equations of state of solid matter at pressure P= 10–50 Mbar can be studied...
Measurements have been made of the in-flight dynamics of imploding capsules indirectly driven by las...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
Understanding high pressure behavior of homogeneous as well as heterogeneous materials is necessary ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
Material equation-of-state (EOS) models, generally providing the pressure and internal energy for a ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceWetted-foam layers are of significant interest for inertial-confinement-fusion...
The equation of state(EOS) of polystyrene and polypropylene were measured using laser-driven shock w...
We have developed an experimental platform for the National Ignition Facility that uses spherically ...
The high pressure equations of state of materials must be accurately known for confident design, sim...
Understanding high pressure behavior materials is necessary in order to address the physical process...
High precision polystyrene equation of state data were measured using laser-driven shock waves with ...
An experiment shows that equations of state of solid matter at pressure P= 10–50 Mbar can be studied...
Measurements have been made of the in-flight dynamics of imploding capsules indirectly driven by las...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
Understanding high pressure behavior of homogeneous as well as heterogeneous materials is necessary ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
Material equation-of-state (EOS) models, generally providing the pressure and internal energy for a ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceMaterial equation-of-state (EOS) models, generally providing the pressure and ...
International audienceWetted-foam layers are of significant interest for inertial-confinement-fusion...