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Towards ultrafast dynamics with split-pulse X-ray photon correlation spectroscopy at free electron laser sources

机译:利用自由电子激光源的裂隙X射线光子相关光谱技术实现超快动力学

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One of the important challenges in condensed matter science is to understand ultrafast, atomic-scale fluctuations that dictate dynamic processes in equilibrium and non-equilibrium materials. Here, we report an important step towards reaching that goal by using a state-of-the-art perfect crystal based split-and-delay system, capable of splitting individual X-ray pulses and introducing femtosecond to nanosecond time delays. We show the results of an ultrafast hard X-ray photon correlation spectroscopy experiment at LCLS where split X-ray pulses were used to measure the dynamics of gold nanoparticles suspended in hexane. We show how reliable speckle contrast values can be extracted even from very low intensity free electron laser (FEL) speckle patterns by applying maximum likelihood fitting, thus demonstrating the potential of a split-and-delay approach for dynamics measurements at FEL sources. This will enable the characterization of equilibrium and, importantly also reversible non-equilibrium processes in atomically disordered materials.
机译:凝聚态科学的重要挑战之一是要了解决定平衡和非平衡材料中动态过程的原子级超快波动。在这里,我们报告了通过使用先进的基于完美晶体的分离延迟系统实现这一目标的重要一步,该系统能够分离单个X射线脉冲并引入飞秒至纳秒级的延迟。我们在LCLS上显示了超快硬X射线光子相关光谱实验的结果,其中使用分开的X射线脉冲来测量悬浮在己烷中的金纳米颗粒的动力学。我们展示了如何通过应用最大似然拟合,即使从非常低强度的自由电子激光(FEL)斑点图案中也可以提取可靠的斑点对比度值,从而证明了在FEL源处进行动力学测量时采用分时延方法的潜力。这将能够表征原子无序材料中的平衡,以及重要的是可逆的非平衡过程。

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