DOE OSTI · 1840900
Electron ptychography achieves atomic-resolution limits set by lattice vibrations
Abstract
Transmission electron microscopes use electrons with wavelengths of a few picometers, potentially capable of imaging individual atoms in solids at a resolution ultimately set by the intrinsic size of an atom. However, owing to lens aberrations and multiple scattering of electrons in the sample, the image resolution is reduced by a factor of 3 to 10. By inversely solving the multiple scattering problem and overcoming the electron-probe aberrations using electron ptychography, we demonstrate an instrumental blurring of less than 20 picometers and a linear phase response in thick samples. The measured widths of atomic columns are limited by thermal fluctuations of the atoms. As a result, our method is also capable of locating embedded atomic dopant atoms in all three dimensions with subnanometer precision from only a single projection measurement.
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Chen, Zhen, Jiang, Yi, Shao, Yu-Tsun, Holtz, Megan E., Odstrčil, Michal, Guizar-Sicairos, Manuel, Hanke, Isabelle, Ganschow, Steffen, Schlom, Darrell G., Muller, David A.. 2021-05-21. Electron ptychography achieves atomic-resolution limits set by lattice vibrations. https://doi.org/10.1126/science.abg2533
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