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Target designs for energetics experiments on the National Ignition Facility

The goal of the first hohlraum energetics experiments on the National Ignition Facility (NIF) [G. H. Miller et al, Optical Eng. 43, 2841 (2004)] is to select the hohlraum design for the first ignition experiments. Sub-scale hohlraums heated by 96 of the 192 laser beams on the NIF are used to emulate the laser-plasma interaction behavior of ignition hohlraums. These 'plasma emulator' targets are 70% scale versions of the 1.05 MJ, 300 eV ignition hohlraum and have the same energy-density as the full-scale ignition designs. Radiation-hydrodynamics simulations show that the sub-scale target is a good emulator of plasma conditions inside the ignition hohlraum, reproducing density ne within 10% and temperature Te within 15% along a laser beam path. Linear backscatter gain analysis shows the backscatter risk to be comparable to that of the ignition target. A successful energetics campaign will allow the National Ignition Campaign to focus its efforts on optimizing ignition hohlraums with efficient laser coupling.
- Lawrence Berkeley National Laboratory United States
- University of North Texas United States
- University of North Texas United States
- Lawrence Berkeley National Laboratory United States
Design, Targets, Us National Ignition Facility, Lasers, Ignition, Plasma, 42 Engineering, Energy Density, 70 Plasma Physics And Fusion
Design, Targets, Us National Ignition Facility, Lasers, Ignition, Plasma, 42 Engineering, Energy Density, 70 Plasma Physics And Fusion
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