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Application of spatially resolved high resolution crystal spectrometry to inertial confinement fusion plasmas

机译:空间分辨高分辨率晶体光谱在惯性约束聚变等离子体中的应用

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摘要

High resolution (λ/Δλ ∼ 10 000) 1D imaging x-ray spectroscopy using a spherically bent crystal and a 2D hybrid pixel array detector is used world wide for Doppler measurements of ion-temperature and plasma flow-velocity profiles in magnetic confinement fusion plasmas. Meter sized plasmas are diagnosed with cm spatial resolution and 10 ms time resolution. This concept can also be used as a diagnostic of small sources, such as inertial confinement fusion plasmas and targets on x-ray light source beam lines, with spatial resolution of micrometers, as demonstrated by laboratory experiments using a 250-μm 55Fe source, and by ray-tracing calculations. Throughput calculations agree with measurements, and predict detector counts in the range 10-8–10-6 times source x-rays, depending on crystal reflectivity and spectrometer geometry. Results of the lab demonstrations, application of the technique to the National Ignition Facility (NIF), and predictions of performance on NIF will be presented.
机译:使用球形弯曲晶体和2D混合像素阵列检测器的高分辨率(λ/Δλ〜10000)一维成像X射线光谱仪已在世界范围内用于多普勒测量磁约束聚变等离子体中的离子温度和等离子体流速分布。诊断为米大小的血浆具有的空间分辨率为cm,时间分辨率为10 ms。这个概念还可以用于诊断小型光源,例如惯性约束聚变等离子体和X射线光源光束线上的目标,其空间分辨率为微米,如使用250μm55Fe光源的实验室实验所证明的那样,以及通过光线跟踪计算。吞吐量计算与测量结果一致,并根据晶体反射率和光谱仪的几何形状,预测探测器计数在源X射线的10-8至10-6倍之间。将展示实验室演示的结果,该技术在国家点火装置(NIF)中的应用以及对NIF性能的预测。

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