During the past 50 years Transmission Electron Microscopy (TEM) has evolved from an imaging tool to a quantitative method that approaches the ultimate goal of understanding the atomic structure of materials atom by atom in three dimensions both experimentally and theoretically. Today's TEM abilities are tested in the special case of a Ga terminated 30 degree partial dislocation in GaAs:Be where it is shown that a combination of high-resolution phase contrast imaging, Scanning TEM, and local Electron Energy Loss Spectroscopy allows for a complete analysis of dislocation cores and associated stacking faults. We find that it is already possible to locate atom column positions with picometer precision in directly interpretable images of the pro...
Des images 'atomiques' de silicium sont décrites et il est montré que les microscopes électroniques ...
Crystallography has been fundamental to the development of many fields of science over the last cent...
Crystallography has been fundamental to the development of many fields of science over the last cent...
In recent years it became possible to extend the resolution of field emission microscopes into the s...
The first electron microscope observations of dislocations fifty years ago already established the m...
By employing the incoherent imaging technique of Z-contrast imaging in a 300kV STEM, the authors sho...
© 2010 Dr. Adrian John D’AlfonsoThis thesis explores theoretical aspects of scanning transmission el...
Nowadays material science benefits from high-resolution transmission electron microscopy (HRTEM) wit...
John Cowley and his group at Arizona State University pioneered the use of transmission electron mi...
Transmission Electron Microscopy (TEM) is an invaluable tool for the characterization of solid (crys...
Electron microscopy has found wide application in material science and biology with the nanometer / ...
microscope (STEM) allows collection of a number of simultaneous signals, such as cathodolumines-cenc...
Crystallography has been fundamental to the development of many fields of science over the last cent...
With improvements in the instrumental information limit and the simultaneous minimization of image d...
This paper presents directly interpretable atomic resolution images of dislocation structures at int...
Des images 'atomiques' de silicium sont décrites et il est montré que les microscopes électroniques ...
Crystallography has been fundamental to the development of many fields of science over the last cent...
Crystallography has been fundamental to the development of many fields of science over the last cent...
In recent years it became possible to extend the resolution of field emission microscopes into the s...
The first electron microscope observations of dislocations fifty years ago already established the m...
By employing the incoherent imaging technique of Z-contrast imaging in a 300kV STEM, the authors sho...
© 2010 Dr. Adrian John D’AlfonsoThis thesis explores theoretical aspects of scanning transmission el...
Nowadays material science benefits from high-resolution transmission electron microscopy (HRTEM) wit...
John Cowley and his group at Arizona State University pioneered the use of transmission electron mi...
Transmission Electron Microscopy (TEM) is an invaluable tool for the characterization of solid (crys...
Electron microscopy has found wide application in material science and biology with the nanometer / ...
microscope (STEM) allows collection of a number of simultaneous signals, such as cathodolumines-cenc...
Crystallography has been fundamental to the development of many fields of science over the last cent...
With improvements in the instrumental information limit and the simultaneous minimization of image d...
This paper presents directly interpretable atomic resolution images of dislocation structures at int...
Des images 'atomiques' de silicium sont décrites et il est montré que les microscopes électroniques ...
Crystallography has been fundamental to the development of many fields of science over the last cent...
Crystallography has been fundamental to the development of many fields of science over the last cent...