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Hohlraum X-ray deposition in indirect-drive ICF ablator materials

机译:间接驱动ICF消融材料中的Hohlraum X射线沉积

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Accurate measurements of shock timing and ablator x-ray burnthrough will be essential for the successful ignition of an indirect-drive inertial confinement fusion (ICF) capsule. In previous work [1], measurements of ablator shock velocities, shock temperatures, and preheat temperatures were made using a 280 nm Streaked Optical Pyrometer (SOP) [2]. The x-ray fluxes were supplied by hohlraums driven by the University of Rochester Omega Laser [3]. More recent ablator experiments at Omega have extended the previous work by using an absolutely calibrated 600-800 nm SOP [4] together with a line-imaging velocity interferometer [5] similar to the diagnostic proposed for accurate National Ignition Facility (NIF) ignition shock timing measurements [6]. Important new information has been obtained relating to ablator surface movement prior to shock breakout, ablator preheat temperature, and preheat effects on the anvil and window components of the shock timing diagnostic system.
机译:准确测量电击正时和消融器X射线烧穿对于成功点燃间接驱动惯性约束聚变(ICF)胶囊至关重要。在以前的工作[1]中,使用280 nm条纹光学高温计(SOP)[2]测量了烧蚀器的冲击速度,冲击温度和预热温度。 X射线通量由罗切斯特欧米茄激光大学[3]驱动的透平机提供。欧米茄最近的消融实验通过使用绝对校准的600-800 nm SOP [4]和线成像速度干涉仪[5]扩展了先前的工作,类似于为精确的国家点火装置(NIF)点火冲击提出的诊断方法定时测量[6]。已经获得了重要的新信息,这些信息涉及冲击发生前的烧蚀器表面运动,烧蚀器预热温度以及对冲击正时诊断系统的砧座和窗部件的预热影响。

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