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首页> 外文期刊>Physics of plasmas >First results of radiation-driven, layered deuterium-tritium implosions with a 3-shock adiabat-shaped drive at the National Ignition Facility
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First results of radiation-driven, layered deuterium-tritium implosions with a 3-shock adiabat-shaped drive at the National Ignition Facility

机译:在国家点火设施上以3冲击绝热形驱动器进行辐射驱动的分层氘-imp内爆的初步结果

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Radiation-driven, layered deuterium-tritium plastic capsule implosions were carried out using a new, 3-shock "adiabat-shaped" drive on the National Ignition Facility. The purpose of adiabat shaping is to use a stronger first shock, reducing hydrodynamic instability growth in the ablator. The shock can decay before reaching the deuterium-tritium fuel leaving it on a low adiabat and allowing higher fuel compression. The fuel areal density was improved by similar to 25% with this new drive compared to similar "high-foot" implosions, while neutron yield was improved by more than 4 times, compared to "low-foot" implosions driven at the same compression and implosion velocity. (C) 2015 AIP Publishing LLC.
机译:辐射驱动的分层式-capsule塑料胶囊内爆是在国家点火装置上使用新型的3冲击“绝热形状”驱动器进行的。绝热成型的目的是使用更强的第一冲击力,从而减少消融器中流体动力不稳定的增长。冲击会在到达氘leaving燃料之前衰减,从而使其处于低绝热状态并允许更高的燃料压缩率。与类似的“高脚”内爆相比,这种新驱动器的燃料面密度提高了约25%,而中子产率比相同压缩和驱动下的“低脚”内爆提高了4倍以上。内爆速度。 (C)2015 AIP Publishing LLC。

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