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Measuring the hot-electron population using time-resolved, hard x-ray detectors on the NIF

机译:使用NIF上的时间分辨,硬X射线探测器测量热电子群

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In laser-driven inertial confinement fusion, hot electrons can preheat the fuel and prevent compression of the capsule to ignition conditions. Measuring the hot-electron population in these high-intensity, laser-driven experiments is key to understanding the laser-plasma interaction and the resulting target evolution. This can be inferred from the bremsstrahlung generated by the interaction of the hot electrons with the target. At the National Ignition Facility (NIF), the filter-fluorescer x-ray diagnostic (FFLEX), a multichannel, hard x-ray spectrometer operating in the 20- to 500-keV range, was recently upgraded to provide time-resolved measurements of the bremsstrahlung spectrum. Characterization data is presented for the upgraded setup, as well as recent results from ignition-scale experiments.
机译:在激光驱动的惯性限制融合中,热电子可以预热燃料并防止胶囊压缩以点火条件。 测量这些高强度的热电子群,激光驱动的实验是了解激光等离子体相互作用和所得的目标进化的关键。 这可以从通过热电子与目标的相互作用产生的Bremsstrahlung推断出来。 在国家点火设施(NIF),最近升级过滤器 - 荧光灯X射线诊断(FFLEX),多通道,硬X射线光谱仪,最近升级为提供时间分辨的测量 Bremsstrahlung光谱。 呈现数据以升级的设置,以及点火规模实验的最新结果。

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