- By:
- Fancher, Christopher M; Hoffmann, Christina M; Sedov, Vladislav N; Parizzi, Andre D; Zhou, Wenduo ; Schultz, Arthur; Wang, Xiaoping ; Long, Daniel
- Journal Name:
- Review of Scientific Instruments
- Page Number:
- 92803
- Volume:
- 89
- Issue Number:
- 9
- Publication Date:
- November 9, 2023
- View DOI Listing:
- https://doi.org/10.1063/1.5031798
Abstract
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 BaTiO3. The developed approach can readily be expanded to investigate other dynamic phenomena using complex sample environments.