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An Automatic Surface Elasticity Measurement and Error Compensation Method Based on Contact Mode AFM

机译:基于接触模式原子力显微镜的表面弹性自动测量与误差补偿方法

摘要

Force aroused from the contact of atomic force microscope (AFM) tip to a sample surface can induce compression of the sample due to its elasticity, thus causing the scanned height image of AFM to be lower than expected. A theoretical investigation of surface elasticity measurement and error compensation method is proposed in this paper. The error source of the height image is systematically demonstrated by analyzing the force curve of different materials in contact mode. Furthermore, an automatic surface elasticity measurement and error compensation method based on information fusion and parameter identification are proposed. In addition, Kalman filter is utilized to filter the compensated height image in order to eliminate system noise. Experimental results show the validity of the proposed compensation method and Kalman filter.
机译:原子力显微镜(AFM)尖端与样品表面接触所引起的力由于其弹性而导致样品压缩,从而导致AFM的扫描高度图像低于预期。提出了表面弹性测量与误差补偿方法的理论研究。通过分析不同材料在接触模式下的力曲线,系统地证明了高度图像的误差来源。此外,提出了一种基于信息融合和参数识别的表面弹性自动测量与误差补偿方法。另外,利用卡尔曼滤波器对补偿后的高度图像进行滤波,以消除系统噪声。实验结果证明了所提出的补偿方法和卡尔曼滤波器的有效性。

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