The increasing need for precise determination of the atomic arrangement of non-periodic structures in materials design and the control of nanostructures explains the growing interest in quantitative transmission electron microscopy. The aim is to extract precise and accurate numbers for unknown structure parameters including atomic positions, chemical concentrations and atomic numbers. For this purpose, statistical parameter estimation theory has been shown to provide reliable results. In this theory, observations are considered purely as data planes, from which structure parameters have to be determined using a parametric model describing the images. As such, the positions of atom columns can be measured with a precision of the order of a ...
Modern scanning transmission electron microscopes (STEM) provide atomic resolution images of inorgan...
Two of the major applications of the high resolution transmission electron microscope (HRTEM) image-...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...
The increasing need for precise determination of the atomic arrangement of non-periodic structures i...
A model-based method is proposed to relatively quantify the chemical composition of atomic columns u...
Transmission electron microscopy is an indispensable tool in modern materials science. It enables th...
An efficient model-based estimation algorithm is introduced in order to quantify the atomic column p...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
The development of new nanocrystals with outstanding physico-chemical properties requires a full thr...
Recently, the scanning transmission electron microscope has become capable of forming electron probe...
Crystallography has been leading the way for the whole 20th century in getting a three-dimensional p...
Understanding nanostructures down to the atomic level is the key to optimizing the design of advance...
This work focus on the efforts made to obtain three-dimensional local information at atomic resoluti...
The crystal structure determines the physical properties of a material. The structure can be analyse...
In electron microscopy, the maximum a posteriori (MAP) probability rule has been introduced as a too...
Modern scanning transmission electron microscopes (STEM) provide atomic resolution images of inorgan...
Two of the major applications of the high resolution transmission electron microscope (HRTEM) image-...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...
The increasing need for precise determination of the atomic arrangement of non-periodic structures i...
A model-based method is proposed to relatively quantify the chemical composition of atomic columns u...
Transmission electron microscopy is an indispensable tool in modern materials science. It enables th...
An efficient model-based estimation algorithm is introduced in order to quantify the atomic column p...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
The development of new nanocrystals with outstanding physico-chemical properties requires a full thr...
Recently, the scanning transmission electron microscope has become capable of forming electron probe...
Crystallography has been leading the way for the whole 20th century in getting a three-dimensional p...
Understanding nanostructures down to the atomic level is the key to optimizing the design of advance...
This work focus on the efforts made to obtain three-dimensional local information at atomic resoluti...
The crystal structure determines the physical properties of a material. The structure can be analyse...
In electron microscopy, the maximum a posteriori (MAP) probability rule has been introduced as a too...
Modern scanning transmission electron microscopes (STEM) provide atomic resolution images of inorgan...
Two of the major applications of the high resolution transmission electron microscope (HRTEM) image-...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...