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X-Ray Penumbral Imaging Diagnostic Developments at the National Ignition Facility

机译:国家点火设施的X射线半影成像诊断发展

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X-ray penumbral imaging has been successfully fielded on a variety of inertial confinement fusion (ICF) capsule implosion experiments on the National Ignition Facility (NIF). We have demonstrated sub-5 im resolution imaging of stagnated plasma cores (hot spots) at x-ray energies from 6 to 30 keV1'2. These measurements are crucial for improving our understanding of the hot deuterium-tritium fuel assembly, which can be affected by various mechanisms, including complex 3-D perturbations caused by the support tent, fill tube or capsule surface roughness. Here we present the progress on several approaches to improve x-ray penumbral imaging experiments on the NIF. We will discuss experimental setups that include penumbral imaging from multiple lines-of-sight, target mounted penumbral apertures and variably filtered penumbral images. Such setups will improve the signal-to-noise ratio and the spatial imaging resolution, with the goal of enabling spatially resolved measurements of the hot spot electron temperature and material mix in ICF implosions.
机译:X射线半影成像已成功应用于国家点火装置(NIF)上的各种惯性约束融合(ICF)胶囊内爆实验。我们已经证明了在6至30 keV1'2的x射线能量下,停滞的等离子体核心(热点)的亚5分辨率分辨率成像。这些测量对于提高我们对热氘-fuel燃料组件的理解至关重要,这可能受到各种机制的影响,包括由支撑帐篷,填充管或胶囊表面粗糙度引起的复杂3-D扰动。在这里,我们介绍了几种在NIF上改进X射线半影成像实验的方法的进展。我们将讨论实验设置,其中包括来自多条视线的半影成像,目标安装的半影孔径和可变过滤的半影图像。这样的设置将提高信噪比和空间成像分辨率,其目标是能够对ICF爆破中的热点电子温度和材料混合进行空间分辨的测量。

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