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Demonstration of High Performance in Layered Deuterium-Tritium Capsule Implosions in Uranium Hohlraums at the National Ignition Facility

机译:国家点火设施中铀空腔中层状氘 - 氚胶囊爆炸的高性能演示

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摘要

We report on the first layered deuterium-tritium (DT) capsule implosions indirectly driven by a “high-foot” laser pulse that were fielded in depleted uranium hohlraums at the National Ignition Facility. Recently, high-foot implosions have demonstrated improved resistance to ablation-front Rayleigh-Taylor instability induced mixing of ablator material into the DT hot spot [Hurricane et al., Nature (London) 506, 343 (2014)]. Uranium hohlraums provide a higher albedo and thus an increased drive equivalent to an additional 25 TW laser power at the peak of the drive compared to standard gold hohlraums leading to higher implosion velocity. Additionally, we observe an improved hot-spot shape closer to round which indicates enhanced drive from the waist. In contrast to findings in the National Ignition Campaign, now all of our highest performing experiments have been done in uranium hohlraums and achieved total yields approaching 10[superscript 16] neutrons where more than 50% of the yield was due to additional heating of alpha particles stopping in the DT fuel.
机译:我们报告了由“高脚”激光脉冲间接驱动的第一个分层的氘((DT)内爆,这些脉冲在国家点火设施的贫化铀矿井中进行了实测。近来,高脚内爆已显示出对消融前瑞利-泰勒不稳定性的诱导,其将消融材料混入DT热点的抵抗力得到了改善[Hurricane et al。,Nature(London)506,343(2014)]。与标准的金制水准仪相比,铀制水准仪提供更高的反照率,因此在驱动器峰值时的驱动力增加相当于额外的25 TW激光功率,从而导致更高的内爆速度。此外,我们观察到热点形状更接近圆形,这表明腰部的动力增强。与“国家点火运动”的结果相反,现在我们所有性能最高的实验都是在铀白矾中完成的,实现了接近10 [上标16]中子的总产量,其中超过50%的产量是由于额外加热了α粒子停止使用DT燃料。

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