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首页> 外文期刊>Review of Scientific Instruments >Simultaneous usage of pinhole and penumbral apertures for imaging small scale neutron sources from inertial confinement fusion experiments
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Simultaneous usage of pinhole and penumbral apertures for imaging small scale neutron sources from inertial confinement fusion experiments

机译:同时使用针孔和半影孔对来自惯性约束聚变实验的小规模中子源成像

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Inertial confinement fusion experiments at the National Ignition Facility are designed to understand the basic principles of creating self-sustaining fusion reactions by laser driven compression of deuterium-tritium (DT) filled cryogenic plastic capsules. The neutron imaging diagnostic provides information on the distribution of the central fusion reaction region and the surrounding DT fuel by observing neutron images in two different energy bands for primary (13–17 MeV) and down-scattered (6–12 MeV) neutrons. From this, the final shape and size of the compressed capsule can be estimated and the symmetry of the compression can be inferred. These experiments provide small sources with high yield neutron flux. An aperture design that includes an array of pinholes and penumbral apertures has provided the opportunity to image the same source with two different techniques. This allows for an evaluation of these different aperture designs and reconstruction algorithms.
机译:美国国家点火装置的惯性约束聚变实验旨在了解通过激光驱动压缩氘-filled(DT)填充的低温塑料胶囊产生自持聚变反应的基本原理。中子成像诊断通过观察初级(13-17 MeV)和向下散射(6-12 MeV)中子在两个不同能带中的中子图像,提供有关中央聚变反应区和周围DT燃料分布的信息。据此,可以估计压缩胶囊的最终形状和大小,并可以推断出压缩的对称性。这些实验为小型源提供了高屈服的中子通量。包括针孔和半影孔阵列的光圈设计提供了使用两种不同技术对同一光源成像的机会。这样可以评估这些不同的光圈设计和重建算法。

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