Barreau Lou, Ross Andrew D, Garg Samay, Kraus Peter M, Neumark Daniel M, Leone Stephen R
Department of Chemistry, University of California, Berkeley, CA, 94720, USA.
Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
Sci Rep. 2020 Apr 1;10(1):5773. doi: 10.1038/s41598-020-62461-6.
We present a table-top beamline providing a soft X-ray supercontinuum extending up to 370 eV from high-order harmonic generation with sub-13 fs 1300 nm driving pulses and simultaneous production of sub-5 fs pulses centered at 800 nm. Optimization of high harmonic generation in a long and dense gas medium yields a photon flux of ~ 1.4 × 10 photons/s/1% bandwidth at 300 eV. The temporal resolution of X-ray transient absorption experiments with this beamline is measured to be 11 fs for 800 nm excitation. This dual-wavelength approach, combined with high flux and high spectral and temporal resolution soft X-ray absorption spectroscopy, is a new route to the study of ultrafast electronic dynamics in carbon-containing molecules and materials at the carbon K-edge.
我们展示了一种桌面型光束线,它利用亚13飞秒的1300纳米驱动脉冲通过高次谐波产生提供延伸至370电子伏特的软X射线超连续谱,并同时产生中心波长为800纳米的亚5飞秒脉冲。在长而密集的气体介质中对高次谐波产生进行优化,在300电子伏特时产生的光子通量约为1.4×10个光子/秒/1%带宽。用该光束线进行X射线瞬态吸收实验时,对于800纳米激发,测量得到的时间分辨率为11飞秒。这种双波长方法,结合高通量以及高光谱和时间分辨率的软X射线吸收光谱,是在碳K边研究含碳分子和材料中超快电子动力学的一条新途径。