论文标题
所有飞秒光泵和X射线探针:孔 - 轴孔,用于游离电子激光器
All femtosecond optical pump and X-ray probe: holey-axicon for free electron laser
论文作者
论文摘要
我们提出了同轴泵(光学) - 探针(X射线)实验概念,并显示了光学组件的性能。使用飞秒(FS)激光结构在二氧化硅板中制造了具有中央100微米直径孔(在光轴上)的贝塞尔束发电机。这种平轴光学元件产生了针状轴向强度分布,可用于光泵脉冲。可以通过探针沿光轴沿着光轴到目标的中心孔引入Sub-1千分尺的FS-X射线游离电子激光器(X-FEL)束。讨论了光泵的不同实现。这种光学元件有助于时空中超短fs脉冲的对齐,可用于在表面上极端能量密度和目标体积的光线相互作用实验中。具有FS-PUMP(光学)的超短效率10 FS X-FEL探针脉冲的全部优势为未开发的相变的时间尺寸和最快的激光诱导的材料加热和淬火速率。介绍了材料的材料结构和天体光学元素设计的更广泛的应用领域。
We put forward a co-axial pump(optical)-probe(X-rays) experimental concept and show performance of the optical component. A Bessel beam generator with a central 100 micrometers-diameter hole (on the optical axis) was fabricated using femtosecond (fs) laser structuring inside a silica plate. This flat-axicon optical element produces a needle-like axial intensity distribution which can be used for the optical pump pulse. The fs-X-ray free electron laser (X-FEL) beam of sub-1 micrometer diameter can be introduced through the central hole along the optical axis onto a target as a probe. Different realisations of optical pump are discussed. Such optical elements facilitate alignment of ultra-short fs-pulses in space and time and can be used in light-matter interaction experiments at extreme energy densities on the surface and in the volume of targets. Full advantage of ultra-short 10 fs X-FEL probe pulses with fs-pump(optical) opens an unexplored temporal dimension of phase transitions and the fastest laser-induced rates of material heating and quenching. A wider field of applications of fs-laser-enabled structuring of materials and design of specific optical elements for astrophotonics is presented.