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The effects of laser absorption on direct-drive capsule experiments at OMEGA

机译:激光吸收对OMEGA直驱胶囊实验的影响

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摘要

The yield of an inertial confinement fusion capsule can be greatly affected by the inclusion of high-Z material in the fuel, either intentionally as a diagnostic or from mixing due to hydrodynamic instabilities. To validate calculations of these conditions, glass shell targets filled with a D _2 and ~3He fuel mixture were fielded in experiments with controlled amounts of pre-mixed Ar, Kr, or Xe. The experiments were fielded at the OMEGA laser [T. R. Boehly, Opt. Commun. 133, 495 (1997)] using 1.0 ns square laser pulses having a total energy 23 kJ and direct drive illumination of shells with an outer diameter of ~925 μm and a thickness of ~5 μm. Data were collected and compared to one-dimensional integrated models for yield and burn-temperature measurements. This paper presents a critical examination of the calculational assumptions used in our experimental modeling. A modified treatment of laser-capsule interaction improves the match to the measured scattered laser light and also improves agreement for yields, burn-temperatures, and the fuel compression as measured by the ratio of two yields. Remaining discrepancies between measurement and calculation will also be discussed.
机译:惯性约束聚变胶囊的产量可能会因燃料中包含高Z材料而受到很大影响,这有意作为诊断方法或由于流体动力不稳定性而导致混合。为了验证这些条件的计算结果,将装满D _2和〜3He燃料混合物的玻璃壳目标物放在实验中,并以可控量的预混合Ar,Kr或Xe进行了实验。实验是在OMEGA激光器上进行的。 R. Boehly,选项公社[133,495(1997)]使用具有总能量23 kJ的1.0 ns方形激光脉冲,并直接驱动外径约为925μm,厚度约为5μm的壳。收集数据并将其与一维集成模型进行比较,以进行产率和燃烧温度测量。本文提出了对我们的实验模型中使用的计算假设的严格审查。激光与胶囊相互作用的改进处理方法可以改善与所测量的散射激光的匹配度,并且还可以提高收率,燃烧温度和燃料压缩率(以两种收率之比来衡量)的一致性。还将讨论测量和计算之间的其余差异。

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