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Generation of Ions and X-rays from a Cu Target by Irradiation of High-power Femtosecond Laser

机译:高功率飞秒激光辐照从铜靶产生离子和X射线

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摘要

We investigated ions and X-rays generated from a Cu target by irradiation of a femtosecond laser pulse at power densities above 10~15 W/cm~2. The kinetic energy of positive ions was measured by a charge collector. The time-of-flight spectra showed multi-peaked structures. The ion energy of faster peak was estimated to be 4.6 keV at power density of 1X10~17 W/cm~2. This ion energy increased with an increase in the laser energy. The ion energy of slower peak was estimated to be about 20 eV and independent of the laser energy. Generated X-rays were detected as hard X-rays in the range of 3-30 keV and as CuK#alpha# line diffracted from Si(111). Both intensities increased with an increase in the laser energy.
机译:我们研究了通过功率密度在10〜15 W / cm〜2以上的飞秒激光脉冲辐照而从铜靶产生的离子和X射线。阳离子的动能通过电荷收集器测量。飞行时间谱显示出多峰结构。在1X10〜17 W / cm〜2的功率密度下,更快峰的离子能量估计为4.6 keV。该离子能量随着激光能量的增加而增加。较慢峰的离子能量估计约为20 eV,并且与激光能量无关。产生的X射线被检测为3-30 keV范围内的硬X射线,并且被检测为从Si(111)衍射的CuK#alpha#线。两种强度都随着激光能量的增加而增加。

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