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Real Time Integration Centre of Mass (riCOM) Reconstruction for 4D-STEM

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arxiv 2112.04442 v2 pith:GBSN6YDJ submitted 2021-12-08 cond-mat.mtrl-sci eess.IV

classification cond-mat.mtrl-scieess.IV
keywords timemethodreconstructiondiffractionhighimagemassmethods
verification ladder T0 review T1 audit T2 compute T3 formal
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A real-time image reconstruction method for scanning transmission electron microscopy (STEM) is proposed. With an algorithm requiring only the center of mass (COM) of the diffraction pattern at one probe position at a time, it is able to update the resulting image each time a new probe position is visited without storing any intermediate diffraction patterns. The results show clear features at higher spatial frequency, such as atomic column positions. It is also demonstrated that some common post processing methods, such as band pass filtering, can be directly integrated in the real time processing flow. Compared with other reconstruction methods, the proposed method produces high quality reconstructions with good noise robustness at extremely low memory and computational requirements. An efficient, interactive open source implementation of the concept is further presented, which is compatible with frame-based, as well as event-based camera/file types. This method provides the attractive feature of immediate feedback that microscope operators have become used to, e.g. conventional high angle annular dark field STEM imaging, allowing for rapid decision making and fine tuning to obtain the best possible images for beam sensitive samples at the lowest possible dose.

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    physics.app-ph 2025-12 conditional novelty 6.0 of 10

    Ptychographic phase reconstruction can be decomposed into a sum of precomputed single-electron contributions, enabling linear-complexity, event-wise direct phase retrieval.

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