Kandel Saugat, Maddali Sidharth, Huang Xiaojing, Nashed Youssef S G, Jacobsen Chris, Allain Marc, Hruszkewycz Stephan O
Opt Express. 2024 May 20;32(11):19594-19610. doi: 10.1364/OE.516729.
Recent advances in phase-retrieval-based x-ray imaging methods have demonstrated the ability to reconstruct 3D distortion vector fields within a nanocrystal by using coherent diffraction information from multiple crystal Bragg reflections. However, these works do not provide a solution to the challenges encountered in imaging lattice distortions in crystals with significant defect content that result in phase wrapping. Moreover, these methods only apply to isolated crystals smaller than the x-ray illumination, and therefore cannot be used for imaging of distortions in extended crystals. We introduce multi-peak Bragg ptychography which addresses both challenges via an optimization framework that combines stochastic gradient descent and phase unwrapping methods for robust image reconstruction of lattice distortions and defects in extended crystals. Our work uses modern automatic differentiation toolsets so that the method is easy to extend to other settings and easy to implement in high-performance computers. This work is particularly timely given the broad interest in using the increased coherent flux in fourth-generation synchrotrons for innovative material research.
基于相位恢复的X射线成像方法的最新进展表明,利用来自多个晶体布拉格反射的相干衍射信息,能够在纳米晶体内重建三维畸变矢量场。然而,这些研究并未解决在具有大量导致相位缠绕的缺陷的晶体中成像晶格畸变时所遇到的挑战。此外,这些方法仅适用于小于X射线照明区域的孤立晶体,因此无法用于扩展晶体中畸变的成像。我们引入了多峰布拉格叠层成像技术,通过一个优化框架解决了这两个挑战,该框架结合了随机梯度下降和相位解缠方法,用于对扩展晶体中的晶格畸变和缺陷进行稳健的图像重建。我们的工作使用了现代自动微分工具集,使得该方法易于扩展到其他设置,并易于在高性能计算机上实现。鉴于人们广泛关注利用第四代同步加速器中增加的相干通量进行创新材料研究,这项工作尤为及时。