Recent advances in high-speed pixelated electron detectors have substantially facilitated the implementation of four-dimensional scanning transmission electron microscopy (4D-STEM). A critical application of 4D-STEM is electron ptychography, which reveals the atomic structure of a specimen by reconstructing its transmission function from redundant convergent-beam electron diffraction patterns. Although 4D-STEM ptychography offers many advantages over conventional imaging modes, this emerging technique has not been fully applied to materials highly sensitive to electron beams. In this Outlook, we introduce the fundamentals of 4D-STEM ptychography, focusing on data collection and processing methods, and present the current applications of 4D-...
The main aspects of material research: material synthesis, material structure, and material properti...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
We report the application of focused probe ptychography using binary 4D datasets obtained using scan...
ConspectusScanning electron nanobeam diffraction, or 4D-STEM (four-dimensional scanning transmission...
Since the introduction of direct electron detectors to scanning transmission electron microscopy (ST...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The aberration-corrected scanning transmission electron microscope (STEM) has emerged as a key tool ...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
A modern scanning electron microscope equipped with a pixelated detector of transmitted electrons ca...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Ptychography has been shown to be an efficient phase contrast imaging technique for scanning transmi...
4D scanning transmission electron microscopy (4D-STEM) is a powerful method for characterizing elect...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The main aspects of material research: material synthesis, material structure, and material properti...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
We report the application of focused probe ptychography using binary 4D datasets obtained using scan...
ConspectusScanning electron nanobeam diffraction, or 4D-STEM (four-dimensional scanning transmission...
Since the introduction of direct electron detectors to scanning transmission electron microscopy (ST...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The aberration-corrected scanning transmission electron microscope (STEM) has emerged as a key tool ...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
A modern scanning electron microscope equipped with a pixelated detector of transmitted electrons ca...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Ptychography has been shown to be an efficient phase contrast imaging technique for scanning transmi...
4D scanning transmission electron microscopy (4D-STEM) is a powerful method for characterizing elect...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The main aspects of material research: material synthesis, material structure, and material properti...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...