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Nuclear diagnosis of the fuel areal density for direct-drive deuterium fuel implosion at the Shenguang-II Upgrade laser facility

机译:核诊断盛光-II升级激光设施直接驾驶氘燃料内含燃料面密度

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摘要

In inertial confinement fusion experiments that involve short-laser pulses such as fast ignition (FI), diagnosis of neutrons is usually very challenging because high-intensity γ rays generated by short-laser pulses would mask the much weaker neutron signal. In this paper, fast-response scintillators with low afterglow and gated microchannel plate photomultiplier tubes are combined to build neutron time-of-flight (nTOF) spectrometers for such experiments. Direct-drive implosion experiments of deuterium-gas-filled capsules were performed at the Shenguang-II Upgrade (SG-II-UP) laser facility to study the compressed fuel areal density (?ρR?) and evaluate the performance of such nTOF diagnostics. Two newly developed quenched liquid scintillator detectors and a gated ultrafast plastic scintillator detector were used to measure the secondary DT neutrons and primary DD neutrons, respectively. The secondary neutron signals were clearly discriminated from the γ rays from (n, γ) reactions, and the compressed fuel areal density obtained with the yield-ratio method agrees well with the simulations. Additionally, a small scintillator decay tail and a clear DD neutron signal were observed in an integrated FI experiment as a result of the low afterglow of the oxygen-quenched liquid scintillator.
机译:在涉及短激光脉冲的惯性限制融合实验中,诸如快速点火(FI),中子的诊断通常非常具有挑战性,因为短激光脉冲产生的高强度γ射线将掩盖较弱的中子信号。在本文中,具有低余辉和门控微通道板光电倍增管的快速响应闪烁体组合以构建用于这种实验的中子飞行时间(NTOF)光谱仪。在盛光-II升级(SG-II-UP)激光设施中进行了氘气填充胶囊的直接驱动爆炸实验,以研究压缩燃料面密度(ρR?),评价此类NTOF诊断的性能。两个新开发的淬火液体闪烁体探测器和门控超速塑料闪烁体检测器分别用于测量次级DT中子和初级DD中子。用来自(n,γ)反应的γ射线清楚地区分次要中子信号,并且通过产量比法得到的压缩燃料面密度与模拟很好地吻合。另外,由于氧淬火液体闪烁体的低余量,在集成的FI实验中观察到小型闪烁体衰减尾部和透明DD中子信号。

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