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Error in dynamic spring constant calibration of atomic force microscope probes due to nonuniform cantilevers

机译:由于悬臂不均匀,原子力显微镜探针的动态弹簧常数校准误差

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Many common atomic force microscope (AFM) spring constant calibration methods regard the AFM probe as a uniform cantilever, neglecting the tip mass and any nonuniformity in the thickness of the probe along its length. This work quantifies the error in the spring constant estimated by the Sader and thermal calibration methods due to nonuniformity in the thickness of the cantilever and the influence of the mass loading effect of the probe tip. Formulae are presented that can be used to compute the uncertainty in cantilever calibration for an arbitrary thickness nonuniformity, or to correct the calibration methods if the thickness nonuniformity is known. The results show that both methods are quite sensitive to nonuniformity. When the first dynamic mode is used in the calibration, the error in the spring constant estimated by either method is between - 4% and 9% for a cantilever whose thickness increases or decreases linearly by 30% along its length. The errors are several times larger if the second or higher dynamic modes are used. To illustrate the proposed methods, a commercial AFM probe that has significant nonuniformity is considered and the error in calibrating this probe is quantified and discussed. For this particular probe, variations in the thickness of the probe over the last 15% of its length are found to significantly reduce the accuracy of the calibration when the thermal method is used, since that method is sensitive to changes in the shape of the eigenmode of the probe near its free end
机译:许多常见的原子力显微镜(AFM)弹簧常数校准方法都将AFM探针视为均匀的悬臂,而忽略了尖端质量以及沿探针长度方向上厚度的任何不均匀性。这项工作量化了由于悬臂厚度的不均匀以及探针尖端的质量加载效应的影响,通过萨德和热校准方法估算的弹簧常数的误差。提出的公式可用于计算任意厚度不均匀性的悬臂校准中的不确定性,或者在已知厚度不均匀性的情况下校正校准方法。结果表明,两种方法对非均匀性都非常敏感。当在校准中使用第一动态模式时,对于厚度沿其长度线性增加或减少30%的悬臂,通过任一方法估算的弹簧常数误差在-4%至9%之间。如果使用第二种或更高的动态模式,则误差会大几倍。为了说明所提出的方法,考虑了具有明显不均匀性的商业AFM探头,并对校准该探头的误差进行了量化和讨论。对于这种特殊的探头,发现使用热法时,在其长度的最后15%处厚度变化会大大降低校准的准确性,因为该方法对本征模形状的变化很敏感。探头靠近其自由端的位置

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