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Towards a full retrieval of the deformation tensor F using convergent beam electron diffraction

机译:用会聚束电子衍射完全恢复形变张量F

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A new method to retrieve the local lattice parameters and rotations in a crystal from off-axis convergent beam electron diffraction (CBED) patterns is presented and validated using Bloch wave dynamical simulations. The originality of the method is to use both the diffracted and transmitted beams and to use kinematical approximations in the fitting algorithm. The study is based on the deformation gradient tensor F which includes rotation and strain. Working on simulated images it is shown that (i) from a single direction of observation, seven parameters out of the nine parameters of F can be determined with an accuracy of 3 x 10(-4) for the normal strain parameters epsilon(xx), epsilon(yy), and epsilon(zz), (ii) the unit cell volume can only be retrieved if the diffracted and transmitted beams are both included in the fitting and (iii) all the nine parameters of F can be determined by combining two directions of observation separated by about 20 degrees. (C) 2015 Published by Elsevier B.V.
机译:提出了一种新的方法,该方法从离轴会聚束电子衍射(CBED)模式中检索晶体中的局部晶格参数和旋转,并使用Bloch波动力学仿真进行了验证。该方法的独创性是既使用衍射光束又使用透射光束,并在拟合算法中使用运动学近似。该研究基于包括旋转和应变的变形梯度张量F。在模拟图像上工作表明,(i)从单个观察方向,对于正常应变参数epsilon(xx),可以确定F的9个参数中的7个参数,精度为3 x 10(-4)。 ,epsilon(yy)和epsilon(zz),(ii)仅当衍射光束和透射光束都包含在拟合中时才能获取单位晶胞体积,并且(iii)F的所有九个参数可以通过组合确定两个观察方向相隔约20度。 (C)2015由Elsevier B.V.发布

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