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Factors limiting quantitative phase retrieval in atomic-resolution differential phase contrast scanning transmission electron microscopy using a segmented detector

Materials Science 2022-01-12 v1

Abstract

Quantitative differential phase contrast imaging of materials in atomic-resolution scanning transmission electron microscopy using segmented detectors is limited by various factors, including coherent and incoherent aberrations, detector positioning and uniformity, and scan-distortion. By comparing experimental case studies of monolayer and few-layer graphene with image simulations, we explore which parameters require the most precise characterisation for reliable and quantitative interpretation of the reconstructed phases. Coherent and incoherent lens aberrations are found to have the most significant impact. For images over a large field of view, the impact of noise and non-periodic boundary conditions are appreciable, but in this case study have less of an impact than artefacts introduced by beam deflections coupling to beam scanning (imperfect tilt-shift purity).

Keywords

Cite

@article{arxiv.2108.08936,
  title  = {Factors limiting quantitative phase retrieval in atomic-resolution differential phase contrast scanning transmission electron microscopy using a segmented detector},
  author = {T. Mawson and D. J. Taplin and H. G. Brown and L. Clark and R. Ishikawa and T. Seki and Y. Ikuhara and N. Shibata and D. M. Paganin and M. J. Morgan and M. Weyland and T. C. Petersen and S. D. Findlay},
  journal= {arXiv preprint arXiv:2108.08936},
  year   = {2022}
}

Comments

16 pages, 9 figures

R2 v1 2026-06-24T05:16:10.953Z