AI-driven atomic manipulation and characterization in the STEM
ORAL · Invited
Abstract
It will be discussed how artificial intelligence can be leveraged to guide the microscope in a variety of styles. In terms of atomic fabrication, the atomic coordinates must be extracted from image data as soon as possible. To overcome this and ensure robust predictability, deep ensembles are used, which simultaneously handle the issues - also encountered in self-driving vehicles - of so-called “out of distribution” shifts.
With fast and reliable extraction of atomic coordinates, one can begin to experiment with beam-induced effects precisely at the single-defect level. We show that different strategies can realize structures – in both graphene and MoS2 - that cannot be fabricated by any other means. It is also discussed how one can autonomously measure and discover different phenomena by utilizing deep kernel learning in both EELS and 4D-STEM modalities.
*This research is sponsored by the INTERSECT Initiative as part of the Laboratory Directed Research and Development Program of Oak Ridge National Laboratory, managed by UT-Battelle, LLC, for the US Department of Energy under contract DE-AC05-00OR22725. This research used resources of the Center for Nanophase Materials Sciences, which is a DOE Office of Science User Facility.
–
Publication: 1. Roccapriore K.M.., Boebinger M.G., Dyck O., Ghosh A., Unocic R.R., Kalinin, S.V., Ziatdinov M. "Probing Electron Beam Induced Transformations on a Single Defect Level via Automated Scanning Transmission Electron Microscopy." ACS Nano 2022 10.1021/acsnano.2c07451
2. Roccapriore K.M., Dyck O., Oxley M.P., Ziatdinov M., Kalinin S.V. "Automated Experiment in 4D-STEM: Exploring Emergent Physics and Structural Behaviors." ACS Nano 2022, 16, 5, 7605–7614. 10.1021/acsnano.1c11118
3. Kalinin S.V., Vasudevan R.K., Liu Y., Ghosh A., Roccapriore K.M., Ziatdinov M. "Microscopy is All You Need." arXiv:2210.06526
4. Mukherjee D., Roccapriore K.M., Al-Najjar A., Ghosh A., Hinkle J.D., Lupini A.R., Vasudevan R.K., Kalinin S.V., Ovchinnikova O.S., Ziatdinov M., Rao N.S. "A roadmap for edge computing enabled automated multidimensional transmission electron microscopy." arXiv:2210.02538
5. Roccapriore K.M., Ziatdinov M., Lupini A.R., Singh A.P., Philipose U., Kalinin S.V. "Discovering Invariant Spatial Features in Electron Energy Loss Spectroscopy Images on the Mesoscopic and Atomic Levels." arXiv:2202.00657
6. Roccapriore K.M., Cho S.-H., Lupini A.R., Milliron D.J., Kalinin S.V., Sculpting the plasmonic responses of nanoparticles by directed electron beam irradiation. Small 10.1002/smll.202105099
7. Roccapriore K.M., Kalinin S.V., Ziatdinov M., Physics discovery in nanoplasmonic systems via autonomous experiments in Scanning Transmission Electron Microscopy. Adv Sci 2022. 10.1002/advs.202203422
8. Roccapriore K.M., Ziatdinov M., Cho S.-H., Hachtel J.A., Kalinin S.V., Predictability of localized plasmonic responses in nanoparticle assemblies. Small, 17, 2100181
Presenters
-
Kevin M Roccapriore
- Oak Ridge National Lab
- Oak Ridge National Laboratory