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Single-shot structural analysis by high-energy X-ray diffraction using an ultrashort all-optical source

机译:使用超短全光源通过高能X射线衍射进行单次结构分析

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摘要

High-energy X-rays (HEX-rays) with photon energies on order of 100 keV have attractive characteristics, such as comparably low absorption, high spatial resolution and the ability to access inner-shell states of heavy atoms. These properties are advantageous for many applications ranging from studies of bulk materials to the investigation of materials in extreme conditions. Ultrafast X-ray diffraction allows the direct imaging of atomic dynamics simultaneously on its natural time and length scale. However, using HEX-rays for ultrafast studies has been limited due to the lack of sources that can generate pulses of sufficiently short (femtosecond) duration in this wavelength range. Here we show single-crystal diffraction using ultrashort ~90 keV HEX-ray pulses generated by an all-optical source based on inverse Compton scattering. We also demonstrate a method for measuring the crystal lattice spacing in a single shot that contains only ~105 photons in a spectral bandwidth of ~50% full width at half maximum (FWHM). Our approach allows us to obtain structural information from the full X-ray spectrum. As target we use a cylindrically bent Ge crystal in Laue transmission geometry. This experiment constitutes a first step towards measurements of ultrafast atomic dynamics using femtosecond HEX-ray pulses.
机译:光子能量约为100 keV的高能X射线(HEX射线)具有吸引人的特性,例如相对较低的吸收率,高空间分辨率和接近重原子的内壳态的能力。这些特性对于从散装材料研究到极端条件下材料研究的许多应用都是有利的。超快X射线衍射可以在自然时间和长度尺度上同时直接成像原子动力学。但是,由于缺少可在此波长范围内产生足够短(飞秒)持续时间脉冲的光源,因此使用HEX射线进行超快研究受到了限制。在这里,我们展示了使用基于逆康普顿散射的全光源产生的超短〜90 keV HEX脉冲产生的单晶衍射。我们还展示了一种用于测量仅包含〜10 5 个光子的单次发射的晶格间距的方法,该光子的光谱带宽为半峰全宽(FWHM)的〜50%。我们的方法使我们能够从完整的X射线光谱中获取结构信息。作为目标,我们使用劳厄透射几何学中的圆柱形弯曲Ge晶体。该实验是使用飞秒HEX射线脉冲测量超快原子动力学的第一步。

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