用相似性自动分割4D/5D-STEM数据,实现高效结构分析
Unsupervised segmentation and clustering workflow for efficient processing of 4D-STEM and 5D-STEM data
- 基于局部衍射图相似性识别晶体区域,生成闭合轮廓
- 压缩数据量数个数量级,提升信号质量并加速分析
- 适用于原位液相纳米颗粒生长等多类实验,开源可复现
四维扫描透射电镜(4D-STEM)可在纳米尺度上映射衍射信息,揭示局部结构、取向与应变。随着数据维度和采样密度提升,尤其在原位扫描衍射实验(5D-STEM)中,对序列测量中结构一致行为的鲁棒分割成为高效且物理意义明确分析的关键。本文提出一种聚类框架,从4D-STEM数据集中识别出晶格差异的区域。通过局部衍射图相似性作为度量,该方法提取封闭轮廓以划分空间连续区域。结果生成平均化聚类衍射图,显著提升信噪比,同时使数据量减少数个数量级,从而实现快速精准的取向、相态与应变映射。我们展示了该方法在金纳米颗粒生长的原位液相4D-STEM数据中的应用。该方案为多种4D-STEM模态提供可扩展、通用的空间连贯分割、数据压缩与定量结构-应变映射路径。完整分析代码与示例工作流已公开,支持可重复使用。
原文摘要 · Abstract (English)
Four-dimensional scanning transmission electron microscopy (4D-STEM) enables mapping of diffraction information with nanometer-scale spatial resolution, offering detailed insight into local structure, orientation, and strain. However, as data dimensionality and sampling density increase, particularly for in situ scanning diffraction experiments (5D-STEM), robust segmentation of structurally consistent behavior across sequential measurements becomes essential for efficient and physically meaningful analysis. Here, we introduce a clustering framework that identifies crystallographically distinct domains from 4D-STEM datasets. By using local diffraction-pattern similarity as a metric, the method extracts closed contours delineating spatially contiguous regions. This approach produces cluster-averaged diffraction patterns that improve signal quality while reducing data volume by orders of magnitude, enabling rapid and accurate orientation, phase, and strain mapping. We demonstrate the applicability of this approach to in situ liquid-cell 4D-STEM data of gold nanoparticle growth. Our method provides a scalable and generalizable route for spatially coherent segmentation, data compression, and quantitative structure-strain mapping across diverse 4D-STEM modalities. The full analysis code and example workflows are publicly available to support reproducibility and reuse.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。