Publication | Closed Access
Single crystal growth and formation of defects in deuterium-tritium layers for inertial confinement nuclear fusion
33
Citations
11
References
2009
Year
EngineeringNuclear PhysicsSingle Crystal GrowthDeuterium-tritium LayersFusion MaterialsFuel LayersFusion NeutronicsControlled Nuclear FusionSolidificationFusion Reactor MaterialMaterials SciencePhysicsSolid-vapor InterfaceMicrostructureInertial Fusion EnergyDislocation Network AnnealsDislocation InteractionNatural SciencesSurface ScienceApplied PhysicsInertial Confinement FusionChemical Vapor Deposition
We identify vapor-etched grain boundary grooves on the solid-vapor interface as the main source of surface roughness in the deuterium-tritium (D–T) fuel layers, which are solidified and then cooled. Current inertial confinement fusion target designs impose stringent limits to the cross-sectional area and total volume of these grooves. Formation of these grain boundaries occurs over time scales of hours as the dislocation network anneals and is inevitable in a plastically deformed material. Therefore, either cooling on a much shorter time scale or a technique that requires no cooling after solidification should be used to minimize the roughness.
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