Simulation of electron energy loss near-edge structure at the Al and N K edges and Al L23 edge in cubic aluminium nitride - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Ultramicroscopy Année : 2004

Simulation of electron energy loss near-edge structure at the Al and N K edges and Al L23 edge in cubic aluminium nitride

Résumé

Calculations of electron energy near edge structures (ELNES) are compared with experimental data obtained in a high-resolution transmission electron microscope. This study concerns small precipitates of aluminium nitride in low carbon steels. The ELNES technique allows to clearly establish that these precipitates crystallize in a cubic rather than in a hexagonal crystallographic cell. The influence on simulated spectra of different parameters are investigated: the size of the atomic shell and its relation with the electron inelastic mean free path. We also examine the influence of the core hole and the sensitivity to cell parameters. We particularly examine the Al L23 near edge structure and features relating to the different transition channels (A1g, Eg and T2g). Results of a multiple scattering and band structure calculations using ICXANES and WIEN97 codes, respectively, are compared in the region from 0 to 30 eV above the edge onsets. Both calculations are in a rather good agreement.

Domaines

Matériaux
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Dates et versions

hal-00474963 , version 1 (21-04-2010)

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  • HAL Id : hal-00474963 , version 1

Citer

Jean-Claude Le Bosse, Mohamed Sennour, Claude Esnouf, H. Chermette. Simulation of electron energy loss near-edge structure at the Al and N K edges and Al L23 edge in cubic aluminium nitride. Ultramicroscopy, 2004, pp.49-64. ⟨hal-00474963⟩
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