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Electron Microscopy of Thin Crystals
P. B. Hirsch,A. Howie,R. B. Nicholson,D. W. Pashley,M. J. Whelan,L. Marton +5 more
- 01 Jun 1977
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TL;DR: Hirsch et al. as mentioned in this paper described further experiments on the preparation of thin film sections of embedded Backscatter Kikuchi diffraction in the SEM for identification of crystallographic thin films by electron microscopy.
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Abstract: In continuation of an earlier publication (Hoppe et al., 1968), further experiments are described here on the preparation of thin film sections of embedded Backscatter Kikuchi diffraction in the SEM for identification of crystallographic thin films by electron microscopy Peter B. Hirsch, Electron Works by Peter B. Hirsch: Electron Microscopy of Thin Crystals Peter B. Hirsch Author of Electron Microscopy of Thin Crystals
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Citations
Refinement of crystal structure parameters using convergent-beam electron diffraction: the low-temperature phase of SrTiO3
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TL;DR: In this article, the authors used convergent-beam electron diffraction (CBED) to refine crystal structure parameters (atom positions and Debye-Waller factors) using a small specimen area down to a few nm in diameter.
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The structure and ordering of ε-MnO2
Chang-Hoon Kim,Chang-Hoon Kim,Zentaro Akase,Lichun Zhang,Lichun Zhang,Arthur H. Heuer,Aron E. Newman,Paula J. Hughes +7 more
TL;DR: The presence of e-MnO2 as a major component of electrolytic manganese dioxide (EMD) has been demonstrated by a combined X-ray diffraction/transmission electron microscopy (TEM) study.
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On the determination of the Burgers vector of quasicrystal dislocations by transmission electron microscopy
TL;DR: In this paper, the authors studied the contrast of dislocations in icosahedral quasicrystals observed by transmission electron microscopy and established the conditions for contrast experiments in which the direction of the Burgers vector components can be determined in physical and orthogonal space.
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Localized deformation of SiCAl composites
TL;DR: In this article, the microstructure change and the macroscale deformation of SiC-6061 Al composite tensile samples were investigated and a mechanism was proposed to account for the change in deformation behavior as a function of volume fraction of the SiC in aluminum is related to the expansion of the plastic zone.
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Hunting the Stobbs factor.
TL;DR: Possibility for further observations by TEM, STEM, CBED and holography are suggested as well as frozen phonon computations that include flexural modes, which could help clarify the origin of the Stobbs factor.
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