DOE OSTI · 1996494
Reconstruction of simulated electrostatic potentials by automatic differentiation-based phase retrieval in electron microscopy imaging
Abstract
Measuring interfacial electrostatic potentials is vital to understanding many fundamental materials properties. A variety of TEM methods exist for measuring electric potentials from the phase shift produced on an electron wave as it passes through a sample. However, most are either experimentally challenging or poorly suited to resolving nanoscale features. Here, we demonstrate the viability of a simple, automatic differentiation-based exit wave reconstruction from a focal series of images to accurately measure nanoscale electric potentials. Here, the analysis suggests that under optimal measurement conditions, electric potentials can be resolved to less than 0.06 V in magnitude and less than 1 nm in spatial extent.
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Carr, Connor G., Zhou, Tao, Cherukara, Mathew, Phatak, Charudatta, Haile, Sossina M.. 2023-08-10. Reconstruction of simulated electrostatic potentials by automatic differentiation-based phase retrieval in electron microscopy imaging. https://doi.org/10.1557/s43579-023-00420-8
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