Publication | Open Access
Laser pulse shape designer for direct-drive inertial confinement fusion implosions
16
Citations
29
References
2023
Year
Abstract Pulse ShapingEngineeringMechanical EngineeringControlled Nuclear FusionFusion PowerInertial Confinement FusionImplosion InstabilitiesFusion System DesignPulse Optimization3D PrintingInertial Fusion Energy
Abstract Pulse shaping is a powerful tool for mitigating implosion instabilities in direct-drive inertial confinement fusion (ICF). However, the high-dimensional and nonlinear nature of implosions makes the pulse optimization quite challenging. In this research, we develop a machine-learning pulse shape designer to achieve high compression density and stable implosion. The facility-specific laser imprint pattern is considered in the optimization, which makes the pulse design more relevant. The designer is applied to the novel double-cone ignition scheme, and simulation shows that the optimized pulse increases the areal density expectation by 16% in one dimension, and the clean-fuel thickness by a factor of four in two dimensions. This pulse shape designer could be a useful tool for direct-drive ICF instability control.
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