Lead (Pb) hohlraum: Target for inertial fusion energy

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Abstract

Recent progress towards demonstrating inertial confinement fusion (ICF) ignition at the National Ignition Facility (NIF) has sparked wide interest in Laser Inertial Fusion Energy (LIFE) for carbon-free large-scale power generation. A LIFE-based fleet of power plants promises clean energy generation with no greenhouse gas emissions and a virtually limitless, widely available thermonuclear fuel source. For the LIFE concept to be viable, target costs must be minimized while the target material efficiency or X-ray albedo is optimized. Current ICF targets on the NIF utilize a gold or depleted uranium cylindrical radiation cavity (hohlraum) with a plastic capsule at the center that contains the deuterium and tritium fuel. Here we show a direct comparison of gold and lead hohlraums in efficiently ablating deuterium-filled plastic capsules with soft x rays. We report on lead hohlraum performance that is indistinguishable from gold, yet costing only a small fraction.

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Ross, J. S., Amendt, P., Atherton, L. J., Dunne, M., Glenzer, S. H., Lindl, J. D., … Wallace, R. (2013). Lead (Pb) hohlraum: Target for inertial fusion energy. Scientific Reports, 3. https://doi.org/10.1038/srep01453

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