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Performance of High-Convergence, Layered DT Implosions with Extended-Duration Pulses at the National Ignition Facility

机译:在国家点火设施上使用扩展持续时间脉冲的高会聚,分层DT内爆性能

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Radiation-driven, low-adiabat, cryogenic DT layered plastic capsule implosions were carried out on the National Ignition Facility (NIF) to study the sensitivity of performance to peak power and drive duration. An implosion with extended drive and at reduced peak power of 350 TW achieved the highest compression with fuel areal density of ~ 1.3 ± 0.1 g/cm~2, representing a significant step from previously measured ~1.0 g/cm~2 toward a goal of 1.5 g/cm~2. Future experiments will focus on understanding and mitigating hydrodynamic instabilities and mix, and improving symmetry required to reach the threshold for thermonuclear ignition on NIF.
机译:在国家点火装置(NIF)上进行了辐射驱动的低绝热低温DT分层塑料胶囊内爆,以研究性能对峰值功率和行驶持续时间的敏感性。扩展驱动并在350 TW的峰值功率降低的情况下爆破以燃料面密度〜1.3±0.1 g / cm〜2达到了最高压缩,这是从先前测得的〜1.0 g / cm〜2迈向目标的重要一步1.5 g / cm〜2。未来的实验将集中于理解和减轻流体动力学的不稳定性和混合,并提高达到NIF的热核点火阈值所需的对称性。

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