Synthetic 4D STEM dataset based on a SrTiO3 supercell with two additional artificial spatial frequencies
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This dataset allows to investigate phase contrast methods for 4D scanning transmission electron microscopy, such as ptychography. A synthetic dataset has been simulated, based on an SrTiO<sub>3</sub> unit cell as a starting point. Then, a five by five super cell was created by repetition. Two artificial spatial frequencies were added to the phase grating, one with a wavelength of a single unit cell and one with a wavelength of the super cell. To eliminate dynamical scattering, a 4D-STEM simulation with 20 × 20 scan points per unit cell was performed using only one slice with a thickness of one unit cell along electron beam direction [001]. <strong>Files</strong> <em>conf_01.mat</em>: HDF5 file with the phase grating. <em>Data extraction and plot of the phase grating.ipynb</em>: Jupyter notebook showing how to access the phase grating file and plot the data. <em>slice_00001_thick_1.9525_nm_blocksz100.raw</em>: Simulated 4D STEM dataset as a raw binary file. Shape 100 x 100 x 596 x 596, dtype float32. <em>ssb-example.ipynb</em>: Jupyter notebook showing first moment analysis and ptychography with the dataset. <strong>Simulation parameters</strong> Scan points: 100x100 Field of view: 1.9525nm Convergence angle: 23mrad, 136 px Acceleration voltage: 300 kV Center: (297, 297) Rotation angle: 0°



