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A GREEDY METHOD FOR RECONSTRUCTING POLYCRYSTALS FROM THREE-DIMENSIONAL X-RAY DIFFRACTION DATA

机译:用三维X射线衍射数据重建多晶的贪婪方法

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摘要

An iterative search method is proposed for obtaining orientation maps inside polycrystals from three-dimensional X-ray diffraction (3DXRD) data. In each step, detector pixel intensities are calculated by a forward model based on the current estimate of the orientation map. The pixel at which the experimentally measured value most exceeds the simulated one is identified. This difference can only be reduced by changing the current estimate at a location from a relatively small subset of all possible locations in the estimate and, at each such location, an increase at the identified pixel can only be achieved by changing the orientation in only a few possible ways. The method selects the location/orientation pair indicated as best by a function that measures data consistency combined with prior information on orientation maps. The superiority of the method to a previously published forward projection Monte Carlo optimization is demonstrated on simulated data.
机译:提出了一种迭代搜索方法,用于从三维X射线衍射(3DXRD)数据获得多晶内部的取向图。在每个步骤中,基于方向图的当前估计,通过正向模型计算检测器像素强度。确定实验测量值最超过模拟值的像素。只能通过从估算中所有可能位置的相对较小子集更改某个位置上的当前估算值来减少这种差异,并且在每个这样的位置,只能通过仅在一个位置上更改方向来实现所标识像素的增加。几种可能的方法。该方法选择由测量数据一致性的功能与方位图上的先验信息相结合来最佳表示的位置/方位对。在模拟数据上证明了该方法相对于以前发布的前向投影蒙特卡洛优化的优越性。

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