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Target design for ignition experiments on the laser Megajoule facility

机译:激光Megajoule设备上点火实验的目标设计

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The adoption of a non-uniform dopant profile has substantially increased the tolerance to high mode deformations of our baseline indirect-drive design. In addition, a low deuterium-tritium (DT) gas density, obtained by 'dynamic quenching' at 2.3 K below triple point, could partly compensate for the decrease in robustness due to DT ageing. Finally, the net margin regarding all laser and target technological defects is about 2. As soon as a sufficient amount of laser beams and diagnostics is available, we will shoot pre-ignition experiments to tune the point design.
机译:采用不均匀的掺杂剂分布大大提高了我们的基线间接驱动设计对高模变形的容忍度。此外,通过在低于三点的2.3 K处“动态淬火”获得的低氘-(DT)气体密度可以部分补偿由于DT老化而导致的坚固性下降。最后,与所有激光和目标技术缺陷有关的净利润约为2。一旦有足够数量的激光束和诊断信息可用,我们将进行点火前实验以调整点设计。

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