Schloz Marcel, Pekin Thomas C, Brown Hamish G, Byrne Dana O, Esser Bryan D, Terzoudis-Lumsden Emmanuel, Taniguchi Takashi, Watanabe Kenji, Findlay Scott D, Haas Benedikt, Ciston Jim, Koch Christoph T
Department of Physics and Center for the Science of Materials Berlin, Humboldt-Universität zu Berlin, Newtonstraße 15, Berlin 12489, Germany.
Ian Holmes Imaging Centre, Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Melbourne, Victoria 3010, Australia.
Microsc Microanal. 2025 Feb 17;31(1). doi: 10.1093/mam/ozae110.
A detailed analysis of ptychography for three-dimensional (3D) phase reconstructions of thick specimens is performed. We introduce multi-focus ptychography, which incorporates a 4D-STEM defocus series to enhance the quality of 3D reconstructions along the beam direction through a higher overdetermination ratio. This method is compared with established multi-slice ptychography techniques, such as conventional ptychography, regularized ptychography, and multi-mode ptychography. Additionally, we contrast multi-focus ptychography with an alternative method that uses virtual optical sectioning through a reconstructed scattering matrix (S-matrix), which offers more precise 3D structure information compared to conventional ptychography. Our findings from multiple 3D reconstructions based on simulated and experimental data demonstrate that multi-focus ptychography surpasses other techniques, particularly in accurately reconstructing the surfaces and interface regions of thick specimens.
对厚样品的三维(3D)相位重建的叠层成像进行了详细分析。我们引入了多焦点叠层成像,它结合了一个四维扫描透射电子显微镜(4D-STEM)散焦系列,通过更高的超定比来提高沿光束方向的3D重建质量。该方法与已有的多层叠层成像技术进行了比较,如传统叠层成像、正则化叠层成像和多模式叠层成像。此外,我们将多焦点叠层成像与另一种通过重建散射矩阵(S矩阵)进行虚拟光学切片的方法进行了对比,与传统叠层成像相比,该方法提供了更精确的3D结构信息。我们基于模拟和实验数据的多次3D重建结果表明,多焦点叠层成像优于其他技术,特别是在准确重建厚样品的表面和界面区域方面。