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First downscattered neutron images from Inertial Confinement Fusion experiments at the National Ignition Facility

机译:国家点火设施惯性约束聚变实验获得的第一个向下散射的中子图像

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Inertial Confinement Fusion experiments at the National Ignition Facility (NIF) are designed to understand and test the basic principles of self-sustaining fusion reactions by laser driven compression of deuterium-tritium (DT) filled cryogenic plastic (CH) capsules. The experimental campaign is ongoing to tune the implosions and characterize the burning plasma conditions. Nuclear diagnostics play an important role in measuring the characteristics of these burning plasmas, providing feedback to improve the implosion dynamics. The Neutron Imaging (NI) diagnostic provides information on the distribution of the central fusion reaction region and the surrounding DT fuel by collecting images at two different energy bands for primary (13–15 MeV) and downscattered (10–12 MeV) neutrons. From these distributions, the final shape and size of the compressed capsule can be estimated and the symmetry of the compression can be inferred. The first downscattered neutron images from imploding ICF capsules are shown in this paper.
机译:国家点火设施(NIF)的惯性约束融合实验旨在理解和测试通过激光驱动的氘tri(DT)填充的低温塑料(CH)胶囊的压缩来实现自我维持融合反应的基本原理。实验活动正在进行中,以调节内爆并表征燃烧的等离子体条件。核诊断在测量这些燃烧等离子体的特征方面起着重要作用,可提供反馈以改善内爆动力。中子成像(NI)诊断通过收集中子(13–15 MeV)和下散射(10–12 MeV)的两个不同能带的图像,提供有关中央聚变反应区域和周围DT燃料分布的信息。根据这些分布,可以估算出压缩胶囊的最终形状和尺寸,并可以推断出压缩的对称性。本文显示了爆炸后的ICF胶囊产生的第一个向下散射的中子图像。

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