DOE OSTI · 2587613
BEACON—automated aberration correction for scanning transmission electron microscopy using Bayesian optimization
Abstract
Aberration correction is an important aspect of modern high-resolution scanning transmission electron microscopy. Most methods of aligning aberration correctors require specialized sample regions and are unsuitable for fine-tuning aberrations without interrupting on-going experiments. Here, we present an automated method of correcting first- and second-order aberrations called BEACON, which uses Bayesian optimization of the normalized image variance to efficiently determine the optimal corrector settings. We demonstrate its use on gold nanoparticles and a hafnium dioxide thin film showing its versatility in nano- and atomic-scale experiments. BEACON can correct all first- and second-order aberrations simultaneously to achieve an initial alignment and first- and second-order aberrations independently for fine alignment. Ptychographic reconstructions are used to demonstrate an improvement in probe shape and a reduction in the target aberration.
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Pattison, Alexander J, Ribet, Stephanie M, Noack, Marcus M, Varnavides, Georgios, Park, Kunwoo, Kirkland, Earl J, Park, Jungwon, Ophus, Colin, Ercius, Peter. 2025-01-01. BEACON—automated aberration correction for scanning transmission electron microscopy using Bayesian optimization. https://doi.org/10.1038/s41524-025-01766-4
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