首页> 外文期刊>Physics of plasmas >Performance of beryllium targets with full-scale capsules in low-fill 6.72-mm hohlraums on the National Ignition Facility
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Performance of beryllium targets with full-scale capsules in low-fill 6.72-mm hohlraums on the National Ignition Facility

机译:在国家点火设施的低填充6.72mm Hohlraum中的全尺寸胶囊的铍靶标的表现

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摘要

When used with 1.06-mm beryllium (Be) capsules on the National Ignition Facility, gold hohlraums with the inner diameter of 5.75mm and helium gas fill density of 1.6 mg/cm3 exhibit significant drive degradation due to laser energy backscatter (of order 14%-17%) and "missing" X-ray drive energy (about 32% during the main pulse). Also, hard to simulate cross-beam energy transfer (CBET) must be used to control the implosion symmetry. Larger, 6.72-mm hohlraums with fill densities ≤0.6 mg/cm~3 generally offer improved drive efficiency, reduced hot-electron preheat, and better control of the implosion symmetry without CBET. Recently, we carried out an exploratory campaign to evaluate performance of 1.06-mm Be capsules in such hohlraums and determine optimal hohlraum parameters. Specifically, we performed a hohlraum fill-density scan with a three-shock, 9.5-ns laser pulse and found that an appropriate axial laser repointing and azimuthal outer-quad splitting resulted in significantly improved hohlraum energetics at fill densities ≤0.3 mg/cm~3 (with backscattered and "missing" energies being of about 5% and 23% of the total laser energy, respectively). The capsule shape at stagnation was slightly oblate and improved with lowering the fill density. We also performed an implosion with a lower-picket, 12.6-ns pulse at the hohlraum fill density of 0.15 mg/cm~3 to observe comparable hohlraum energetics (about 3% of backscattered and 27% of "missing" energy) but an even more oblate implosion shape. Thus, achieving symmetric implosions of 1.06-mm Be capsules in low-fill, 6.72-mm gold hohlraums with reasonably low-adiabat pulses may not be feasible. However, symmetric implosions have recently been successfully demonstrated in such hohlraums with 0.8-mm Be capsules.
机译:当与国家点火设施中的1.06毫米铍(BE)胶囊一起使用时,由于激光能量反向散射(订单14%(订单) -17%)和“缺少”X射线驱动能量(主脉冲期间约32%)。此外,难以模拟十字梁能量转移(CBET)来控制嵌入对称性。较大,6.72毫米的HOHLRAUMS,填充密度≤0.6mg/ cm〜3通常提供改进的驱动效率,降低热电子预热,更好地控制没有CBET的爆炸对称。最近,我们进行了探索性运动,以评估此类HOHLRAUMS中1.06毫米的胶囊的性能,并确定最佳的HOHLRAUM参数。具体而言,我们通过三冲击,9.5-ns激光脉冲进行了HOHLAUM填充密度扫描,发现适当的轴向激光延续和方位角外四分道,导致填充密度下的HOHLRAUM能量学≤0.3mg/ cm〜 3(背面散射和“缺失”能量分别为总激光能量的约5%和23%)。降低填充密度的停滞处的胶囊形状略微扁平和改善。我们还在Hohlraum填充密度为0.15mg / cm〜3的Hohlraum填充密度下进行了爆炸,观察了可比的Hohlraum能量学(约3%的后散,而27%的“缺失”能量),但甚至更多否则嵌入形状。因此,在低填充中实现1.06毫米的对称内膜,具有合理低,可行的6.72毫米金HOHLRAUMS可能不可行。然而,最近在这种Hohlraum中已经成功地证明了对称的爆炸,其中胶囊0.8毫米。

著录项

  • 来源
    《Physics of plasmas》 |2017年第1期|共9页
  • 作者单位

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

    Lawrence Livermore National Laboratory Livermore California 94551 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

    Performance; beryllium; targets;

    机译:表现;铍;目标;

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