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在会聚束电子衍射中使用霍夫变换进行高阶劳厄区(HOLZ)线识别。

Using the Hough transform for HOLZ line identification in convergent beam electron diffraction.

作者信息

Krämer S, Mayer J

机构信息

Max-Planck-Institut für Metallforschung, Seestraße 92, D-70174 Stuttgart, Germany.

出版信息

J Microsc. 1999 Apr;194(1):2-11. doi: 10.1046/j.1365-2818.1999.00475.x.

Abstract

The Hough transform as a means for automatic line detection is applied for higher order Laue zone (HOLZ) line identification in convergent beam electron diffraction. The HOLZ line positions are commonly used to measure the strain state in the investigated material. Besides the automation, a very important aspect is the accuracy of the detected line positions. The limits are determined by the amount of noise in the pattern relative to the contrast of the HOLZ lines and the line width. Our investigations show that sub-pixel resolution can be achieved routinely. We have also developed a new strain analysis procedure in which the dynamical shift of each individual line can be taken into account using a model based on several Ewald spheres with different radii. In comparison to the effective high voltage method, finer details of the dispersion surface can be considered, which increases the accuracy of the strain analysis. A measurement of the thermal expansion of aluminium is presented as a model experiment. The lattice constants were determined with an accuracy of about 10-4.

摘要

霍夫变换作为一种自动直线检测方法,被应用于会聚束电子衍射中的高阶劳厄区(HOLZ)线识别。HOLZ线位置通常用于测量被研究材料中的应变状态。除了自动化之外,一个非常重要的方面是检测到的线位置的准确性。这些限制由图案中的噪声量相对于HOLZ线的对比度和线宽来确定。我们的研究表明,常规情况下可以实现亚像素分辨率。我们还开发了一种新的应变分析程序,其中可以使用基于几个不同半径的埃瓦尔德球的模型来考虑每条单独线的动态位移。与有效高压法相比,可以考虑色散面的更精细细节,这提高了应变分析的准确性。作为一个模型实验,给出了铝的热膨胀测量结果。晶格常数的测定精度约为10^-4。

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