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Computer vision distortion correction of scanning probe microscopy images

机译:扫描探针显微镜图像的计算机视觉畸变校正

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摘要

Since its inception, scanning probe microscopy (SPM) has established itself as the tool of choice for probing surfaces and functionalities at the nanoscale. Although recent developments in the instrumentation have greatly improved the metrological aspects of SPM, it is still plagued by the drifts and nonlinearities of the piezoelectric actuators underlying the precise nanoscale motion. In this work, we present an innovative computer-vision-based distortion correction algorithm for offline processing of functional SPM measurements, allowing two images to be directly overlaid with minimal error – thus correlating position with time evolution and local functionality. To demonstrate its versatility, the algorithm is applied to two very different systems. First, we show the tracking of polarisation switching in an epitaxial Pb(Zr0.2Ti0.8)O3 thin film during high-speed continuous scanning under applied tip bias. Thanks to the precise time-location-polarisation correlation we can extract the regions of domain nucleation and track the motion of domain walls until the merging of the latter in avalanche-like events. Secondly, the morphology of surface folds and wrinkles in graphene deposited on a PET substrate is probed as a function of applied strain, allowing the relaxation of individual wrinkles to be tracked.
机译:自成立以来,扫描探针显微镜(SPM)已将其自身确立为探测纳米级表面和功能的首选工具。尽管仪器的最新发展极大地改善了SPM的计量学方面,但仍然受到精确纳米级运动基础上压电致动器的漂移和非线性的困扰。在这项工作中,我们提出了一种创新的基于计算机视觉的失真校正算法,用于功能SPM测量的离线处理,从而可以以最小的误差直接覆盖两幅图像,从而将位置与时间演变和本地功能相关联。为了证明其多功能性,将该算法应用于两个截然不同的系统。首先,我们显示了在外加Pb(Zr0.2Ti0.8)O3薄膜在施加尖端偏压的情况下进行高速连续扫描过程中偏振转换的跟踪。由于精确的时间-位置-极化相关性,我们可以提取畴核的区域并跟踪畴壁的运动,直到后者在雪崩状事件中合并。其次,根据施加的应变来探测沉积在PET基材上的石墨烯中的表面褶皱和皱纹的形态,从而追踪单个皱纹的松弛情况。

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