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Theoretical analysis of hard x-ray generation by nonperturbative interaction of ultrashort light pulses with a metal

机译:超短光脉冲与金属的非扰动相互作用产生硬x射线的理论分析

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摘要

The interaction of intense femtosecond pulses with metals allows for generating ultrashort hard x-rays. In contrast to plasma theories, tunneling from the target into vacuum is introduced as electron generation step, followed by vacuum acceleration in the laser field and re-entrance into the target to generate characteristic x-rays and Bremsstrahlung. For negligible space charge in vacuum, the Kα flux is proportional to the incident intensity and the wavelength squared, suggesting a strong enhancement of the x-ray flux by mid-infrared driving pulses. This prediction is in quantitative agreement with experiments on femtosecond Cu Kα generation.
机译:飞秒强脉冲与金属的相互作用可以产生超短的硬X射线。与等离子体理论相反,从靶到真空的隧穿是作为电子生成步骤引入的,然后在激光场中进行真空加速,然后再次进入靶中,以生成特征X射线和Bre致辐射。对于真空中可忽略不计的空间电荷,Kα通量与入射强度和波长的平方成正比,这表明中红外驱动脉冲会大大增强X射线通量。该预测与飞秒CuKα生成的实验在数量上一致。

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