arXiv · 2610.11053
Three-dimensional dopant distribution from a single, out-of-focus spectroscopic image
Abstract
Increasing miniaturization of nanoscale devices makes determining the three-dimensional distribution of dopants increasingly important. In out-of-focus spectroscopic scanning transmission electron microscopy images, we show that dopant atoms appear as disks with radii relating to dopant depth, allowing the three-dimensional distribution of dopants to be determined from simple geometric analysis of a single out-of-focus image. Through numerical experiments on Si-doped graphene we validate statistical detection and Bayesian inference methods to quantify confidence and uncertainties while making the analysis more robust at lower dose. We present proof-of-concept experimental data from an Fe-doped spinel, retrieving dopant depth to within around 2 nanometres.
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Michael Deimetry, Timothy Petersen, Matthew Weyland, Scott Findlay. 2026-10-08. Three-dimensional dopant distribution from a single, out-of-focus spectroscopic image. https://arxiv.org/abs/2610.11053
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