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Robust reconstruction of time-resolved diffraction from ultrafast streak cameras

机译:从超快条纹相机中可靠地重建时间分辨衍射

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摘要

In conjunction with ultrafast diffraction, streak cameras offer an unprecedented opportunity for recording an entire molecular movie with a single probe pulse. This is an attractive alternative to conventional pump-probe experiments and opens the door to studying irreversible dynamics. However, due to the “smearing” of the diffraction pattern across the detector, the streaking technique has thus far been limited to simple mono-crystalline samples and extreme care has been taken to avoid overlapping diffraction spots. In this article, this limitation is addressed by developing a general theory of streaking of time-dependent diffraction patterns. Understanding the underlying physics of this process leads to the development of an algorithm based on Bayesian analysis to reconstruct the time evolution of the two-dimensional diffraction pattern from a single streaked image. It is demonstrated that this approach works on diffraction peaks that overlap when streaked, which not only removes the necessity of carefully choosing the streaking direction but also extends the streaking technique to be able to study polycrystalline samples and materials with complex crystalline structures. Furthermore, it is shown that the conventional analysis of streaked diffraction can lead to erroneous interpretations of the data.
机译:与超快速衍射相结合,条纹相机提供了前所未有的机会,只需一个探测脉冲即可记录整个分子电影。这是常规泵浦探针实验的一种有吸引力的替代方法,为研究不可逆动力学打开了大门。但是,由于整个检测器上的衍射图样出现“拖尾”现象,因此,划线技术迄今仅限于简单的单晶样品,并且要格外小心,以免出现重叠的衍射斑。在本文中,通过开发一种随时间变化的衍射图案进行条纹化的一般理论来解决这一局限性。了解该过程的基本物理原理导致了基于贝叶斯分析的算法的发展,该算法可从单个条纹图像重建二维衍射图的时间演化。证明了这种方法适用于在划线时重叠的衍射峰,这不仅消除了仔细选择划线方向的必要性,而且扩展了划线技术以能够研究多晶样品和具有复杂晶体结构的材料。此外,显示出条纹衍射的常规分析可能导致数据的错误解释。

著录项

  • 作者

    Badali, D.; Miller, R.;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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