Single atom detection is of key importance to solving a wide range of scientific and technological problems. The strong interaction of electrons with matter makes transmission electron microscopy one of the most promising techniques. In particular, aberration correction using scanning transmission electron microscopy has made a significant step forward toward detecting single atoms. However, to overcome radiation damage, related to the use of high-energy electrons, the incoming electron dose should be kept low enough. This results in images exhibiting a low signal-to-noise ratio and extremely weak contrast, especially for light-element nanomaterials. To overcome this problem, a combination of physics-based model fitting and the use of a mod...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Abstract: The ability of electron microscopes to analyze all the atoms in individual nanostructures ...
In this work, a recently developed quantitative approach based on the principles of detection theory...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
We report an innovative method to explore the optimal experimental settings to detect light atoms fr...
We report an innovative method to explore the optimal experimental settings to detect light atoms fr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
The increasing need for precise determination of the atomic arrangement of non-periodic structures i...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Abstract: The ability of electron microscopes to analyze all the atoms in individual nanostructures ...
In this work, a recently developed quantitative approach based on the principles of detection theory...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
Single atom detection is of key importance to solving a wide range of scientific and technological p...
We report an innovative method to explore the optimal experimental settings to detect light atoms fr...
We report an innovative method to explore the optimal experimental settings to detect light atoms fr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
The increasing need for precise determination of the atomic arrangement of non-periodic structures i...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
Abstract: The ability of electron microscopes to analyze all the atoms in individual nanostructures ...
In this work, a recently developed quantitative approach based on the principles of detection theory...