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Interpretable and efficient contrast in scanning transmission electron microscopy with a diffraction grating beamsplitter

Published 28 Jul 2018 in physics.ins-det, cond-mat.mtrl-sci, and physics.optics | (1808.00370v1)

Abstract: Efficient imaging of biomolecules, 2D materials and electromagnetic fields depends on retrieval of the phase of transmitted electrons. We demonstrate a method to measure phase in a scanning transmission electron microscope using a nanofabricated diffraction grating to produce multiple probe beams. The measured phase is more interpretable than phase-contrast scanning transmission electron microscopy techniques without an off-axis reference wave, and the resolution could surpass that of off-axis electron holography. We apply the technique to image nanoparticles, carbon sub- strates and electric fields. The contrast observed in experiments agrees well with contrast predicted in simulations.

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