Le Bossé J C, Sennour M, Esnouf C, Chermette H
Groupe d'Etudes de Métallurgie Physique et de Physique des Matériaux, CNRS UMR 5510, bât. Blaise Pascal, INSA de Lyon, 20 avenue Albert Einstein, F-69621 Villeurbanne Cedex, France.
Ultramicroscopy. 2004 Feb;99(1):49-64. doi: 10.1016/S0304-3991(03)00147-5.
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 steel. 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 L(23) near edge structure and features relating to the different transition channels (A(1g), E(g) and T(2g)). 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.
将电子能量近边结构(ELNES)的计算结果与在高分辨率透射电子显微镜中获得的实验数据进行了比较。本研究涉及低碳钢中氮化铝的小析出物。ELNES技术能够清楚地确定这些析出物在立方晶胞而非六方晶胞中结晶。研究了不同参数对模拟光谱的影响:原子壳层的大小及其与电子非弹性平均自由程的关系。我们还研究了芯孔的影响以及对晶胞参数的敏感性。我们特别研究了Al L(23)近边结构以及与不同跃迁通道(A(1g)、E(g)和T(2g))相关的特征。分别使用ICXANES和WIEN97代码进行的多重散射和能带结构计算结果,在高于边起始点0至30 eV的区域内进行了比较。两种计算结果相当吻合。