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Relativistic electron mirrors from nanoscale foils for coherent frequency upshift to the extreme ultraviolet

机译:纳米箔的相对论性电子镜可将相干频率升频至极紫外

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摘要

Reflecting light from a mirror moving close to the speed of light has been envisioned as a route towards producing bright X-ray pulses since Einstein’s seminal work on special relativity. For an ideal relativistic mirror, the peak power of the reflected radiation can substantially exceed that of the incident radiation due to the increase in photon energy and accompanying temporal compression. Here we demonstrate for the first time that dense relativistic electron mirrors can be created from the interaction of a high-intensity laser pulse with a freestanding, nanometre-scale thin foil. The mirror structures are shown to shift the frequency of a counter-propagating laser pulse coherently from the infrared to the extreme ultraviolet with an efficiency >104 times higher than in the case of incoherent scattering. Our results elucidate the reflection process of laser-generated electron mirrors and give clear guidance for future developments of a relativistic mirror structure.
机译:自从爱因斯坦关于狭义相对论的开创性研究以来,已经设想将反射镜的反射光移动到接近光速的方向,以产生明亮的X射线脉冲。对于理想的相对论镜,由于光子能量的增加和伴随的时间压缩,反射辐射的峰值功率可以大大超过入射辐射的峰值功率。在这里,我们首次证明可以通过高强度激光脉冲与独立的纳米级薄箔片的相互作用来产生致密的相对论电子镜。所示的镜面结构使相向传播的激光脉冲的频率从红外相干移至极紫外,效率比非相干散射高10 sup 4 sup倍。我们的结果阐明了激光产生的电子镜的反射过程,并为相对论镜结构的未来发展提供了明确的指导。

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