Electron diffraction from crystals containing stacking faults: I
- 1 September 1957
- journal article
- research article
- Published by Taylor & Francis in Philosophical Magazine
- Vol. 2 (21), 1121-1142
- https://doi.org/10.1080/14786435708242742
Abstract
The dynamical theory of electron diffraction is applied to the case of a plate-like crystal containing a stacking fault. The effect of the fault is to produce a phase difference in the electron waves diffracted by the two parts of the faulted crystal. Expressions for the wave functions and for the corresponding intensities, predicting interference fringes in the region of overlap of the two parts are derived. It is shown that the problem is one of the interference of three coherent waves, in contrast to the case of the wedge crystal where only two waves are involved. At the Bragg reflecting position the spacing of the fringes is half that corresponding to the extinction distance in the crystal. At large deviations from the Bragg position the predictions of the dynamical theory are asymptotic to those of the kinematical theory. The case of two or more stacking faults on neighbouring atomic planes is also considered.Keywords
This publication has 12 references indexed in Scilit:
- Observation of Dislocations in Metals by Means of Moiré Patterns on Electron MicrographsNature, 1957
- Detection of dislocation by the Moiré pattern in electron micrographsActa Crystallographica, 1957
- LXVIII. Direct observations of the arrangement and motion of dislocations in aluminiumPhilosophical Magazine, 1956
- Dynamical Theory of Electron Diffraction for Finite Polyhedral Crystal III. Fresnel Diffraction FormulaJournal of the Physics Society Japan, 1953
- A New Type of Striation Observed in Electron-Micrographs of SericiteJournal of the Physics Society Japan, 1953
- Dynamical Theory of Electron Diffraction for a Finite Polyhedral Crystal II. Fraunhofer FormulaJournal of the Physics Society Japan, 1952
- Dynamical Theory of Electron Diffraction for a Finite Polyhedral Crystal I. Extension of Bethe's TheoryJournal of the Physics Society Japan, 1952
- Electron Microscope and Diffraction Study of Metal Crystal Textures by Means of Thin SectionsJournal of Applied Physics, 1949
- Zur prüfung der dynamischen theorie der elektronenbeugung am kristallgitterPhysica, 1940
- Theorie der Beugung von Elektronen an KristallenAnnalen der Physik, 1928