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Early time implosion symmetry from two-axis shock-timing measurements on indirect drive NIF experiments

机译:间接驱动NIF实验中两轴冲击定时测量的早期内爆对称性

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摘要

An innovative technique has been developed and used to measure the shock propagation speed along two orthogonal axes in an inertial confinement fusion indirect drive implosion target. This development builds on an existing target and diagnostic platform for measuring the shock propagation along a single axis. A 0.4mm square aluminum mirror is installed in the ablator capsule which adds a second orthogonal view of the x-ray-driven shock speeds. The new technique adds capability for symmetry control along two directions of the shocks launched in the ablator by the laser-generated hohlraum x-ray flux. Laser power adjustments in four different azimuthal cones based on the results of this measurement can reduce time-dependent symmetry swings during the implosion. Analysis of a large data set provides experimental sensitivities of the shock parameters to the overall laser delivery and in some cases shows the effects of laser asymmetries on the pole and equator shock measurements. (C) 2014 AIP Publishing LLC.
机译:已经开发出一种创新技术,并将其用于测量惯性约束聚变间接驱动内爆目标中沿两个正交轴的冲击传播速度。该开发基于现有的目标和诊断平台,用于测量沿单轴的震动传播。在消融囊中安装了一个0.4毫米见方的铝镜,该镜增加了X射线驱动的冲击速度的第二个正交视图。这项新技术增加了沿两个方向对由激光产生的Hohlraum X射线通量在消融器中产生的震动进行对称控制的能力。根据此测量结果,在四个不同方位锥中调整激光功率可以减少内爆期间随时间变化的对称摆动。对大量数据的分析提供了冲击参数对整个激光输出的实验敏感性,并且在某些情况下显示了激光不对称对极点和赤道冲击测量的影响。 (C)2014 AIP Publishing LLC。

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