C1 - Journal Articles RefereedTo develop a Bloch wave framework for lattice-resolution contrast derived from coherent or incoherent scattering of an electron probe focused onto a crystal, boundary conditions which influence the propagation of an arbitrarily distorted coherent electron probe are addressed. These boundary conditions are particularly relevant for a probe focused within a unit cell, and lead to a general theory which hinges on Bloch wave excitation amplitudes being written as a function of beam position and focus. Whereas antisymmetric Bloch states are not excited for an incident plane wave at an exact zone axis orientation, these states may be strongly excited depending on probe focus and position within the unit cell. Equatio...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...
Abstract: We show that in the limit of a large objective (probe-forming) aperture, relevant to a sph...
In a Bloch-wave-based scanning transmission electron microscope (STEM) image simulation, a framework...
We use a Bloch wave approach to show that, even for coherent dynamical scattering from a stationary ...
We use a Bloch wave approach to further investigate the origins of the incoherent nature of Z-contra...
© 2005 Dr. Scott David FindlayThis thesis explores the theory describing wavefunctions and images, b...
In a Bloch-wave-based STEM image simulation, a framework for calculating the cross section for any i...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
A new method is proposed to measure a beam divergence angle and chromatic defocus spread in a transm...
The reduction in the focal depth of field that occurs through the use of larger apertures in aberrat...
The use of a high-angle annular detector in a scanning transmission electron microscope is shown to ...
A full coherent Bloch wave calculation is presented to investigate high-angle annular dark-field ima...
We report a study of scattering dynamics in crystals employing momentum-resolved scanning transmissi...
Abstract A full coherent Bloch wave calculation is presented to investigate high-angle annular dark-...
Quantitative differential phase contrast imaging of materials in atomic-resolution scanning transmis...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...
Abstract: We show that in the limit of a large objective (probe-forming) aperture, relevant to a sph...
In a Bloch-wave-based scanning transmission electron microscope (STEM) image simulation, a framework...
We use a Bloch wave approach to show that, even for coherent dynamical scattering from a stationary ...
We use a Bloch wave approach to further investigate the origins of the incoherent nature of Z-contra...
© 2005 Dr. Scott David FindlayThis thesis explores the theory describing wavefunctions and images, b...
In a Bloch-wave-based STEM image simulation, a framework for calculating the cross section for any i...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
A new method is proposed to measure a beam divergence angle and chromatic defocus spread in a transm...
The reduction in the focal depth of field that occurs through the use of larger apertures in aberrat...
The use of a high-angle annular detector in a scanning transmission electron microscope is shown to ...
A full coherent Bloch wave calculation is presented to investigate high-angle annular dark-field ima...
We report a study of scattering dynamics in crystals employing momentum-resolved scanning transmissi...
Abstract A full coherent Bloch wave calculation is presented to investigate high-angle annular dark-...
Quantitative differential phase contrast imaging of materials in atomic-resolution scanning transmis...
Materials scientists have come to rely on the fact that high-resolution transmission electron micros...
Abstract: We show that in the limit of a large objective (probe-forming) aperture, relevant to a sph...
In a Bloch-wave-based scanning transmission electron microscope (STEM) image simulation, a framework...