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Ultrafast Time-Resolved Hard X-Ray Emission Spectroscopy on a Tabletop

机译:超快时间 - 桌面上解决的硬X射线发射光谱

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Experimental tools capable of monitoring both atomic and electronic structure on ultrafast (femtosecond to picosecond) time scales are needed for investigating photophysical processes fundamental to light harvesting, photocatalysis, energy and data storage, and optical display technologies. Time-resolved hard x-ray ( 3 keV ) spectroscopies have proven valuable for these measurements due to their elemental specificity and sensitivity to geometric and electronic structures. Here, we present the first tabletop apparatus capable of performing time-resolved x-ray emission spectroscopy. The time resolution of the apparatus is better than 6?ps. By combining a compact laser-driven plasma source with a highly efficient array of microcalorimeter x-ray detectors, we are able to observe photoinduced spin changes in an archetypal polypyridyl iron complex [ Fe ( 2 , 2 ′ ? bipyridine ) 3 ] 2 + and accurately measure the lifetime of the quintet spin state. Our results demonstrate that ultrafast hard x-ray emission spectroscopy is no longer confined to large facilities and now can be performed in conventional laboratories with 10 times better time resolution than at synchrotrons. Our results are enabled, in part, by a 100- to 1000-fold increase in x-ray collection efficiency compared to current techniques.
机译:能够在超快(FemtoSecond至PicoSecond)时间尺度上监测原子和电子结构的实验工具,用于调查光学药物过程,对光收集,光电催化,能量和数据存储以及光学显示技术的基础。由于其对几何和电子结构的敏感性,所以分辨的硬X射线(> 3KeV)光谱证明了这些测量值。这里,我们介绍了能够执行时间分辨X射线发射光谱的第一桌面装置。该装置的时间分辨率优于6?PS。通过用高效的微量微量仪X射线探测器组合紧凑的激光驱动的等离子体源,我们能够观察到原型萘吡啶铁络合物[Fe(2,2'β-吡啶)3] 2 +和准确测量Quintet旋转状态的寿命。我们的结果表明,超快的硬X射线发射光谱不再被限制在大型设施中,现在可以在传统的实验室中进行,而不是在同步调节中更好的时间分辨率进行10倍。与当前技术相比,我们的结果部分能够容纳100至1000倍的X射线收集效率。

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