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Radiation Hydrodynamic Simulations in the Planar Scheme for the Fundamental Studies of Shock Ignition

机译:平面计划中的辐射流体动力学模拟,用于激波点火基础研究

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As a fundamental and crucial research topic in the direct-driven inertial confinement fusion (ICF), especially for shock ignition (SI), investigation on the laser coupling with planar low Z targets is beneficial for deep physical comprehension at the primary phase of SI. The production of the intense shock and the shock coalescence in the multi-layer targets, driven by the 3 omega intense laser (351 nm the wavelength), were studied in detail with the 1D and 2D radiation hydrodynamic simulations. It was inferred that the 1D simulation would overrate the shock velocity and the ablation pressure of the spike; the coalescence time and the velocity of the coalescence shock depended evidently on the pulse shape and the start time of the spike. The present study can also provide a semi-quantitative reference for the design of the SI decomposition experiments on the Shenguang-III prototype laser facility.
机译:作为直接驱动惯性约束聚变(ICF)的基础和关键研究课题,尤其是对于冲击点火(SI),对平面低Z目标的激光耦合进行研究有助于在SI的初级阶段进行深入的物理理解。利用1D和2D辐射流体动力学模拟,详细研究了由3Ω强激光(波长351 nm)驱动的多层目标中的强激波和激波聚结。可以推断,一维模拟会高估尖峰的冲击速度和消融压力;反之,聚结时间和聚结冲击的速度明显取决于脉冲形状和尖峰的开始时间。本研究还可以为神光三号原型激光设备上的SI分解实验的设计提供一个半定量参考。

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