4.4 Article

Contrast transfer and noise considerations in focused-probe electron ptychography

期刊

ULTRAMICROSCOPY
卷 221, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.ultramic.2020.113189

关键词

Focused-probe electron ptychography; Single side-band method; Contrast transfer function

资金

  1. EPSRC [EP/K040375/1, EP/M010708/1]
  2. Henry Royce Institute [EP/R010145/1]
  3. JEOL UK Ltd.
  4. PNDetector
  5. Diamond Light Source [MG20431, MG22317]
  6. EPSRC [EP/S001999/1] Funding Source: UKRI

向作者/读者索取更多资源

Electron ptychography is a 4-D STEM phase-contrast imaging technique that is suitable for light-element and beam-sensitive materials, with focus on the contrast transfer properties. Experimental results demonstrate that contrast transfer can be achieved using the single side-band method in electron ptychography.
Electron ptychography is a 4-D STEM phase-contrast imaging technique with applications to light-element and beam-sensitive materials. Although the electron dose (electrons incident per unit area on the sample) is the primary figure of merit for imaging beam-sensitive materials, it is also necessary to consider the contrast transfer properties of the imaging technique. Here, we explore the contrast transfer properties of electron ptychography. The contrast transfer of focused-probe, non-iterative electron ptychography using the single side-band (SSB) method is demonstrated experimentally. The band-pass nature of the phase-contrast transfer function (PCTF) for SSB ptychography places strict limitations on the probe convergence semi-angles required to resolve specific sample features with high contrast. The PCTF of the extended ptychographic iterative engine (ePIE) is broader than that for SSB ptychography, although when both high and low spatial frequencies are transferred, band-pass filtering is required to remove image artefacts. Normalisation of the transfer function with respect to the noise level shows that the transfer window is increased while avoiding noise amplification. Avoiding algorithms containing deconvolution steps may also increase the dose-efficiency of ptychographic phase reconstructions.

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