2023/12/20 by Haozhi Sha, Jizhe Cui, Sha, Haozhi +5
Physics and Astronomy · #Advanced X-ray Imaging Techniques #Crystallography and Radiation Phenomena #Dark Matter and Cosmic Phenomena
paper · pdf · doi:10.48550/arxiv.2401.02439
It is generally assumed that a high spatial resolution of a microscope requires a large numerical aperture of the imaging lens or detector. In this study, the information limit of 15 pm is achieved in transmission electron microscopy using only the bright-field disk (small numerical aperture) via multislice ptychography. The results indicate that high-frequency information has been encoded in the electrons scattered to low angles due to the multiple scattering of electrons in the objects, making it possible to break the diffraction limit of imaging via bright-field ptychography.