Hinsley Gerard N, Kewish Cameron M, van Riessen Grant A
Opt Express. 2020 Nov 23;28(24):36862-36872. doi: 10.1364/OE.408530.
Dynamic coherent diffractive imaging (CDI) reveals the fine details of structural, chemical, and biological processes occurring at the nanoscale but imposes strict constraints on the object distribution and illumination. Ptychographic CDI relaxes these constraints by exploiting redundant information in data obtained from overlapping regions of an object, but its time resolution is inherently limited. We have extended ptychographic redundancy into the spatiotemporal domain in dynamic CDI, automatically identifying redundant information in time-series coherent diffraction data obtained from dynamic systems. Simulated synchrotron experiments show that high spatiotemporal resolution is achieved without a priori knowledge of the object or its dynamics.
动态相干衍射成像(CDI)能够揭示纳米尺度下结构、化学和生物过程的精细细节,但对物体分布和照明施加了严格的限制。叠层成像CDI通过利用从物体重叠区域获得的数据中的冗余信息来放宽这些限制,但其时间分辨率本质上是有限的。我们已将叠层成像冗余扩展到动态CDI的时空域中,自动识别从动态系统获得的时间序列相干衍射数据中的冗余信息。模拟同步加速器实验表明,无需事先了解物体或其动力学情况就能实现高时空分辨率。