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首页> 外文期刊>Automation Science and Engineering, IEEE Transactions on >Modeling the Interactions Among Neighboring Nanostructures for Local Feature Characterization and Defect Detection
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Modeling the Interactions Among Neighboring Nanostructures for Local Feature Characterization and Defect Detection

机译:建模相邻的纳米结构之间的相互作用,以进行局部特征表征和缺陷检测

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摘要

Since properties of nanomaterials are determined by their structures, characterizing nanostructure feature variability and diagnosing structure defects are of great importance for quality control in scale-up nanomanufacturing. It is known that nanostructure interactions such as competing for source materials during growth contribute strongly to nanostructure uniformity and defect formation. However, there is a lack of rigorous formulation to describe nanostructure interactions and their effects on nanostructure variability. In this work, we develop a method to relate local nanostructure variability (quality measure) to nanostructure interactions under the framework of Gaussian Markov random field. With the developed modeling and estimation approaches, we are able to extract nanostructure interactions for any local region with or without defects based on its feature measurement. The established connection between nanostructure variability and interactions not only provides a metric for assessing nanostructure quality, but also enables a method to automatically detect defects and identify their patterns based on the underlying interaction patterns. Both simulation and real case studies are conducted to demonstrate the developed methods. The insights obtained from real case study agree with physical understanding.
机译:由于纳米材料的特性取决于其结构,因此表征纳米结构的特征变异性和诊断结构缺陷对于按比例放大纳米制造中的质量控制至关重要。众所周知,纳米结构的相互作用,例如在生长过程中竞争原料,对纳米结构的均匀性和缺陷的形成有很大的贡献。但是,缺乏描述纳米结构相互作用及其对纳米结构变异性影响的严格公式。在这项工作中,我们开发了一种在高斯马尔可夫随机场框架下将局部纳米结构变异性(质量度量)与纳米结构相互作用联系起来的方法。利用已开发的建模和估计方法,我们能够基于其特征度量提取具有或不具有缺陷的任何局部区域的纳米结构相互作用。纳米结构变异性和相互作用之间的既定联系不仅提供了一种评估纳米结构质量的指标,而且使一种方法能够自动检测缺陷并基于潜在的相互作用模式识别缺陷的模式。进行了仿真和实际案例研究,以证明所开发的方法。从实际案例研究中获得的见解与身体理解相吻合。

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