DOE OSTI · 1995411
Laser-driven ramp-compression experiments on the national ignition facility
Abstract
This report details the analyses and related uncertainties in measuring longitudinal-stress–density paths in indirect laser-driven ramp equation-of-state (EOS) experiments. Experiments were conducted at the National Ignition Facility (NIF) located at the Lawrence Livermore National Laboratory. The NIF can deliver up to 2 MJ of laser energy over 30 ns and provide the necessary laser power and control to ramp compress materials to TPa pressures (1 TPa = 10 × 10 6 atmospheres). These data provide low-temperature solid-state EOS data relevant to the extreme conditions found in the deep interiors of giant planets. In these experiments, multi-stepped samples with thicknesses in the range of 40–120 µm experience an initial shock compression followed by a time-dependent ramp compression to peak pressure. Interface velocity measurements from each thickness combine to place a constraint on the Lagrangian sound speed as a function of particle velocity, which in turn allows for the determination of a continuous stress–density path to high levels of compressibility. In this report, we present a detailed description of the experimental techniques and measurement uncertainties and describe how these uncertainties combine to place a final uncertainty in both stress and density. Here, we address the effects of time-dependent deformation and the sensitivity of ramp EOS techniques to the onset of phase transformations.
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Smith, Raymond F., Volz, Travis J., Celliers, Peter M., Braun, David G., Swift, Damian C., Gorman, Martin G., Briggs, Richard, Fernandez-Pañella, Amalia, Kirsch, Leo E., Marshall, Michelle C., McNaney, James M., Eggert, Jon H., Fratanduono, Dayne E., Ali, Suzanne J.. 2023-08-15. Laser-driven ramp-compression experiments on the national ignition facility. https://doi.org/10.1063/5.0150031
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