DOE OSTI · 1874159
Enabling High-Energy-Density Physics Using X-Ray Free Electron Lasers
Abstract
New High-Energy-Density (HED) Physics research facilities, such as x-ray free electron lasers (XFEL) are becoming available to the research community. These new tools can be used to address stockpile stewardship science questions in the HED regime with greater accuracy and in parameter ranges not previously accessible. Two important challenges that must be overcome before using the XFEL are developing simulation tools needed to design the experiment and developing large quantities of inexpensive targets from which the HED state is created. We developed two-dimensional simulations in a new geometry (planar) to determine basic plasma parameters that could be expected in a notional experiment. We developed a postprocessor that used the results of the simulations to predict the x-ray Thomson scattering (XRTS) signal that yield the plasma density and pressure at a specified location and time. Finally, we developed several possible target geometries that are inexpensive and easy to use. With these tools in hand, the risk in designing an experiment for an XFEL is significantly reduced.
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Batha, Steven H., Hakel, Peter, Hoffman, Nelson M., Strickland, Alexandria. 2022-06-27. Enabling High-Energy-Density Physics Using X-Ray Free Electron Lasers. https://doi.org/10.2172/1874159
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