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Focusing of X-ray free-electron laser pulses with reflective optics

机译:利用反射光学器件聚焦X射线自由电子激光脉冲

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摘要

X-ray free-electron lasers produce intense femtosecond pulses that have applications in exploring new frontiers in science. The unique characteristics of X-ray free-electron laser radiation can be enhanced significantly using focusing optics. However, with such an optical device, even a slight deviation from the ideal design can lead to considerable errors in the focusing properties. Here, we present reflective optics comprising elliptically figured mirrors with nanometre accuracy to preserve a coherent wavefront, successfully focusing a 10 keV X-ray free-electron laser to the small area of 0.95 × 1.20 μm~2. The near 100% efficiency of this arrangement allows an enormous 40,000-fold increase in the fluence to a power density of 6 × 10~(17) W cm~(-2). This achievement is directly applicable to the generation of a nanometre-size beam with an extreme power density of >1× 10~(22) W cm~(-2), which will play a crucial role in the advance of microscopic research towards ultimate ?ngstrom resolution, as well as in the development of nonlinear optical sciences under extreme conditions.
机译:X射线自由电子激光产生强烈的飞秒脉冲,可用于探索科学的新领域。使用聚焦光学器件可以显着增强X射线自由电子激光辐射的独特特性。然而,对于这种光学装置,即使与理想设计的微小偏差也可能导致聚焦特性的相当大的误差。在这里,我们提出的反射光学系统包括具有纳米精度的椭圆形反射镜,以保持相干的波前,从而成功地将10 keV X射线自由电子激光聚焦到0.95×1.20μm〜2的小区域。这种布置的效率接近100%,可将通量提高40,000倍,功率密度为6×10〜(17)W cm〜(-2)。这一成就可直接应用于产生纳米功率级光束,其极限功率密度> 1×10〜(22)W cm〜(-2),这将在微观研究向最终方向发展中发挥关键作用。埃分辨率,以及在极端条件下非线性光学科学的发展。

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