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Direct observation of density gradients in ICF capsule implosions via streaked Refraction Enhanced Radiography (RER)

机译:通过条纹折射增强射线照相(RER)直接观察ICF胶囊内爆内的密度梯度

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摘要

We have performed refraction enhanced radiography (RER) measurements of indirect drive layered high density carbon capsule implosions relevant for inertial confinement fusion. Streaked RER data using a 5 mu m wide imaging slit, backlit by a 7.8 keV Ni He-alpha laser driven x-ray source, shows features due to inflight density gradients in the ablator and fuel ice that are not visible in absorption only radiographs. To avoid motional blurring at smaller in-flight radii, we concentrate our probe to the main compression and N + 1 shock phases. During the main compression phase, both simulations and data show fringes consistent with steep density gradients. During the later N + 1 shock phase we see loss of fringes and hence infer less fuel compression than simulated, that may be caused by ice-ablator mix. Quantitative analysis shows that at the ablation front during the main compression phase, the simulated density differential agrees with the data, but the inferred scale length is 50% longer than simulated. During the N + 1 shock phase, the data shows 2x higher ablation front density than simulated for similar scale lengths that may be affected by data cross talk with the reduced fuel compression at the ice-ablator interface.
机译:我们已经进行了折射增强的放射线照相(RER)测量的间接驱动层的高密度碳胶囊内墨,其相关用于惯性矛盾融合。使用5 mu m宽成像狭缝的条纹RER数据,由7.8keV Ni He-alpha激光驱动的X射线源背光,显示出由于烧蚀器和燃料冰中的机上密度梯度而不可见的射线照片,所示的特征。为避免在较小的飞行中的动机模糊,我们将探针集中在主压缩和N + 1个冲击阶段。在主要压缩阶段,模拟和数据显示条纹与陡峭密度梯度一致。在后来的N + 1冲击阶段,我们看到损失条纹,因此推断比模拟更少的燃料压缩,这可能是由冰烧蚀器混合引起的。定量分析表明,在主压缩阶段期间的消融前面,模拟密度差异与数据同意,但推断的刻度长度比模拟长50%。在N + 1冲击阶段期间,数据示出了比模拟的2x更高的烧蚀前密度,这对于类似的比例长度,这可能受到数据交叉谈话的与冰烧蚀器界面的降低的燃料压缩影响。

著录项

  • 来源
    《High energy density physics》 |2020年第1期|共7页
  • 作者单位

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab POB 808 Livermore CA 94550 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

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