Publication | Closed Access
Suppression of the Rayleigh-Taylor Instability due to Self-Radiation in a Multiablation Target
86
Citations
32
References
2004
Year
EngineeringPhysicsRayleigh-taylor InstabilityGrowth RateTarget FabricationApplied PhysicsFusion PowerInertial Confinement FusionControlled Nuclear FusionRadiation TransportMultiablation TargetInertial Fusion EnergyPropulsionSynchrotron RadiationSynchrotron Radiation SourceWave InterferencePlastic Target
A scheme to suppress the Rayleigh-Taylor instability has been investigated for a direct-drive inertial fusion target. In a high-Z doped-plastic target, two ablation surfaces are formed separately-one driven by thermal radiation and the other driven by electron conduction. The growth of the Rayleigh-Taylor instability is significantly suppressed on the radiation-driven ablation surface inside the target due to the large ablation velocity and long density scale length. A significant reduction of the growth rate was observed in simulations and experiments using a brominated plastic target. A new direct-drive pellet was designed using this scheme.
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