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Progress in X-ray imaging and spectroscopy of ultraintense laser matter interactions

机译:超强激光物质相互作用的X射线成像和光谱学研究进展

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Energetics of ultraintense laser-matter interactions are strongly characterized by production of large currents of high energy electrons. We describe recent progress in diagnostics of such electrons and related processes. We use an Energy Encoded Pin-Hole Camera, a novel X-ray imaging technique based on single photon detection to investigate generation and transport of such high energy electrons following the interaction of femtosecond laser pulses with solids at intensities exceeding 5 x 10~(19)W/ cm2. The imaging system was configured to work in a single-photon detection regime to identify the energy of the X-ray photons and to discriminate among different X-ray emission processes.
机译:超强激光与物质相互作用的能量学以产生高能电子大电流为特征。我们描述了这种电子及其相关过程的诊断学的最新进展。我们使用能量编码的针孔相机,一种基于单光子检测的新颖X射线成像技术,研究飞秒激光脉冲与强度超过5 x 10〜(19)的固体相互作用后产生的高能电子的产生和传输。瓦特/平方厘米。成像系统配置为在单光子检测方案中工作,以识别X射线光子的能量并区分不同的X射线发射过程。

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