Fancher C M, Hoffmann C, Sedov V, Parizzi A, Zhou W, Schultz A J, Wang X P, Long D
Neutron Scattering Science Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37830, USA.
X-Ray Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.
Rev Sci Instrum. 2018 Sep;89(9):092803. doi: 10.1063/1.5031798.
Time-resolved diffraction has become a vital tool for probing dynamic responses to an applied stimulus. Such experiments traditionally use hardware solutions to histogram measured data into their respective bin. We will show that a major advantage of event-based data acquisition, which time-stamps measured diffraction data with 100 ns accuracy, is much preferred over hardware histogramming of the data by enabling postprocessing for advanced custom binning using a software solution. This approach is made even more powerful by coupling measured diffraction data with metadata about the applied stimuli and material response. In this work, we present a time-filter approach that leverages the power of event-based diffraction collection to reduce stroboscopic data measured over many hours into equally weighted segments that represent subsets of the response to a single cycle of the applied stimulus. We demonstrate this approach by observing ferroelectric/ferroelastic domain wall motion during electric field cycling of BaTiO. The developed approach can readily be expanded to investigate other dynamic phenomena using complex sample environments.
时间分辨衍射已成为探测对施加刺激的动态响应的重要工具。传统上,此类实验使用硬件解决方案将测量数据直方图化到各自的 bins 中。我们将表明,基于事件的数据采集(以 100 ns 的精度为测量的衍射数据添加时间戳)的一个主要优点是,通过使用软件解决方案进行高级自定义 binning 的后处理,比数据的硬件直方图化更受青睐。通过将测量的衍射数据与有关施加的刺激和材料响应的元数据相结合,这种方法变得更加强大。在这项工作中,我们提出了一种时间滤波方法,该方法利用基于事件的衍射收集的能力,将在数小时内测量的频闪数据减少到等权重的段中,这些段代表对施加刺激的单个周期的响应子集。我们通过观察 BaTiO 电场循环期间的铁电/铁弹畴壁运动来演示这种方法。所开发的方法可以很容易地扩展到使用复杂样品环境研究其他动态现象。