Publication | Open Access
Assembly of High-Areal-Density Deuterium-Tritium Fuel from Indirectly Driven Cryogenic Implosions
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Citations
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References
2012
Year
Materials ScienceEngineeringNuclear PhysicsNuclear DataCryogenicsNuclear ReactorsNational Ignition FacilityInertial Confinement FusionFuel DensityInertial Fusion EnergyFusion PowerControlled Nuclear FusionNuclear MaterialsCryogenic Deuterium-tritiumFusion Reactor MaterialNuclear EngineeringHigh-areal-density Deuterium-tritium Fuel
The National Ignition Facility has been used to compress deuterium-tritium to an average areal density of ~1.0±0.1 g cm(-2), which is 67% of the ignition requirement. These conditions were obtained using 192 laser beams with total energy of 1-1.6 MJ and peak power up to 420 TW to create a hohlraum drive with a shaped power profile, peaking at a soft x-ray radiation temperature of 275-300 eV. This pulse delivered a series of shocks that compressed a capsule containing cryogenic deuterium-tritium to a radius of 25-35 μm. Neutron images of the implosion were used to estimate a fuel density of 500-800 g cm(-3).
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