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Generation of intense coherent attosecond X-ray pulses using relativistic electron mirrors

机译:使用相对论电子镜产生强相干的阿秒X射线脉冲

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摘要

We analyse the steepening of the leading edge of femtosecond petawatt pulses with the use of plasma layers and show that, at an electron density several times higher than the critical one, an asymmetric (in time domain) pulse can be produced with an amplitude of the first half-wave differing little from the maximum pulse amplitude. Using numerical simulation, we have studied the interaction of such pulses with nanometre-thick films, including the generation of relativistic electron mirrors and the reflection of a coun-terpropagating probe pulse from such mirrors. The resulting coherent X-ray pulses have a duration of ~120 as and a power of ~600 GW at a wavelength of ~13 nm. Our results demonstrate that the reflectivity of a relativistic electron mirror situated in the accelerating pulse field is independent of the probe pulse amplitude when it increases up to the accelerating pulse amplitude.
机译:我们利用等离子层分析了飞秒PB脉冲前沿的变陡现象,结果表明,在电子密度比临界电子密度高几倍的情况下,可以产生振幅为的非对称(时域)脉冲。前半波与最大脉冲幅度相差不大。使用数值模拟,我们研究了此类脉冲与纳米级薄膜的相互作用,包括相对论性电子镜的产生,以及这种镜反射的同位探针的反射。产生的相干X射线脉冲在〜13 nm波长下的持续时间为〜120 as,功率为〜600 GW。我们的结果表明,位于加速脉冲场中的相对论电子镜的反射率在增加到加速脉冲幅度时与探针脉冲幅度无关。

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