AbstractΓThe short range ordered (SRO) structure in Ni 4 Mo has been investigated by means of high resolution transmission electron microscopy with digital image processing and Monte Carlo simulation. High resolution transmission electron microscope (HRTEM) images were recorded with an Imaging Plate
HRTEM image contrast of short range order in Ni4Mo
β Scribed by S. Hata; D. Shindo; T. Mitate; N. Kuwano; S. Matsumura; K. Oki
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 848 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0968-4328
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β¦ Synopsis
The high resolution transmission electron microscope (HRTEM) imaging of short range order (SRO) in Ni 4 Mo was investigated by means of multi-slice image simulations. The HRTEM images of Ni 4 Mo exhibit locally bright dot patterns corresponding to the [001] projections of the N 2 M 2 -type (chalcopyrite-like) structure. The multi-slice simulations revealed that the N 2 M 2 patterns are rationalized as the projection patterns of the SRO structure which consists of subunit cell clusters of D1 a , D0 22 and Pt 2 Mo structures. The N 2 M 2 -type image contrast appears when both the fundamental fcc lattice reflections and the 1 1/2 0 diffuse scattering of SRO contribute enough to imaging. This suggests that a good coincidence in intensity distribution between the Fourier power spectra of HRTEM images and the electron diffraction patterns is one of the conditions for the image contrast of SRO to be interpreted in terms of the projection contrast.
π SIMILAR VOLUMES
in rewed form I5 Srptrmher 19753 .+bstract-The state of order of a quenched alloy of Ni,Mo was examined by making a systemanc study of electron diffraction patterns taken at a number of poles. These were of both high and low order. chosen to give a full three-dimensional description of the reciproca