Zamponi F, Ansari Z, Woerner M, Elsaesser T
Max-Born-Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max-Born-Str. 2A, Berlin, Germany.
Opt Express. 2010 Jan 18;18(2):947-61. doi: 10.1364/OE.18.000947.
X-ray powder diffraction with a femtosecond time resolution is introduced to map ultrafast structural dynamics of polycrystalline condensed matter. Our pump-probe approach is based on photoexcitation of a powder sample with a femtosecond optical pulse and probing changes of its structure by diffracting a hard X-ray pulse generated in a laser-driven plasma source. We discuss the key aspects of this scheme including an analysis of detection sensitivity and angular resolution. Applying this technique to the prototype molecular material ammonium sulfate, up to 20 powder diffraction rings are recorded simultaneously with a time resolution of 100 fs. We describe how to derive transient charge density maps of the material from the extensive set of diffraction data in a quantitative way.
引入具有飞秒时间分辨率的X射线粉末衍射技术来绘制多晶凝聚态物质的超快结构动力学图谱。我们的泵浦-探测方法基于用飞秒光脉冲对粉末样品进行光激发,并通过衍射激光驱动等离子体源中产生的硬X射线脉冲来探测其结构变化。我们讨论了该方案的关键方面,包括检测灵敏度和角分辨率分析。将该技术应用于原型分子材料硫酸铵,以100飞秒的时间分辨率同时记录了多达20个粉末衍射环。我们描述了如何从大量衍射数据中以定量方式推导出该材料的瞬态电荷密度图。