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Kα X-ray Emission from Nanowire Cu Targets Driven by Femtosecond Laser Pulses for X-ray Conversion and Backlight Imaging

机译:由Femtosecond激光脉冲驱动的纳米线Cu靶为X射线转换和背光成像驱动的KαX射线发射

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A high-quality X-ray source was proposed by modifying the target material structure characteristics driven by ultrahigh laser energy. The experiments were performed on the Ti:sapphire femtosecond laser beam device (4.3–6 J, 30 fs), one of the three XG-III lasers in Laser Fusion Research Center of China Academy of Engineering Physics. The femtosecond laser beam drove the nanowire copper material with an average length of 18–50 μm and a diameter of about 260 nm. A single-photon counting charge-coupled device was employed to measure the copper Kα X-ray emission of the nanowire and foil targets. A clear maximum photon yield of the nanowire target was calculated to be 3.6 × 10~(8) photons sr~(–1) s~(–1), the conversion efficiency was up to 0.0087%, and the average yield was 2.5 times that of the copper foil targets. In addition, by using a pinhole imaging method of Φ10 μm, the minimum full width at half maximum spot size of the X-ray source was calculated in the range of 85–240 μm, which was similar to that of the copper foil material with a long radius of 170 μm and a short radius of 63 μm. The experimental data illustrate that the nanowire has the potential to enhance the energy absorption of femtosecond laser for X-ray conversion and backlight imaging.
机译:通过修改由超高激光能量驱动的目标材料结构特性提出了高质量的X射线源。实验是在TI:蓝宝石飞秒激光束装置(4.3-6J,30 FS)上,是中国工程物理学学院激光融合研究中心的三个XG-III激光器之一。飞秒激光束驱动纳米线铜材料,平均长度为18-50μm,直径为约260nm。使用单光子计数电荷耦合器件来测量纳米线和箔靶的铜KαX射线发射。纳米线靶的透明最大光子产率计算为3.6×10〜(8)光子SR〜(-1)S〜(-1),转化效率高达0.0087%,平均产率为2.5倍铜箔靶标的。另外,通过使用φ10μm的针孔成像方法,X射线源的半最大点尺寸处的最小全宽度在85-240μm的范围内计算,其与铜箔材料类似长半径为170μm,短半径为63μm。实验数据说明纳米线具有增强飞秒激光器的能量吸收的X射线转换和背光成像。

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