Popmintchev Dimitar, Galloway Benjamin R, Chen Ming-Chang, Dollar Franklin, Mancuso Christopher A, Hankla Amelia, Miaja-Avila Luis, O'Neil Galen, Shaw Justin M, Fan Guangyu, Ališauskas Skirmantas, Andriukaitis Giedrius, Balčiunas Tadas, Mücke Oliver D, Pugzlys Audrius, Baltuška Andrius, Kapteyn Henry C, Popmintchev Tenio, Murnane Margaret M
JILA, University of Colorado at Boulder, Boulder, Colorado 80309-0440, USA.
National Tsing Hua University, Institute of Photonics Technologies, Hsinchu 30013, Taiwan.
Phys Rev Lett. 2018 Mar 2;120(9):093002. doi: 10.1103/PhysRevLett.120.093002.
Recent advances in high-order harmonic generation have made it possible to use a tabletop-scale setup to produce spatially and temporally coherent beams of light with bandwidth spanning 12 octaves, from the ultraviolet up to x-ray photon energies >1.6 keV. Here we demonstrate the use of this light for x-ray-absorption spectroscopy at the K- and L-absorption edges of solids at photon energies near 1 keV. We also report x-ray-absorption spectroscopy in the water window spectral region (284-543 eV) using a high flux high-order harmonic generation x-ray supercontinuum with 10^{9} photons/s in 1% bandwidth, 3 orders of magnitude larger than has previously been possible using tabletop sources. Since this x-ray radiation emerges as a single attosecond-to-femtosecond pulse with peak brightness exceeding 10^{26} photons/s/mrad^{2}/mm^{2}/1% bandwidth, these novel coherent x-ray sources are ideal for probing the fastest molecular and materials processes on femtosecond-to-attosecond time scales and picometer length scales.
高次谐波产生技术的最新进展使得利用桌面级装置产生空间和时间上相干的光束成为可能,其带宽跨越12个倍频程,从紫外线到光子能量大于1.6 keV的X射线。在此,我们展示了利用这种光在接近1 keV的光子能量下对固体的K和L吸收边进行X射线吸收光谱分析。我们还报告了在水窗光谱区域(284 - 543 eV)使用高通量高次谐波产生X射线超连续谱进行的X射线吸收光谱分析,该超连续谱在1%带宽内具有10⁹ 光子/秒的通量,比之前使用桌面光源所能达到的通量高出3个数量级。由于这种X射线辐射以单个阿秒到飞秒脉冲的形式出现,其峰值亮度超过10²⁶ 光子/秒/毫弧度²/毫米²/1%带宽,这些新型相干X射线源非常适合在飞秒到阿秒时间尺度和皮米长度尺度上探测最快的分子和材料过程。