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Determination of tip transfer function for quantitative MFM using frequency domain filtering and least squares method

机译:使用频域滤波和最小二乘法确定定量MFM的尖端传递函数

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摘要

Magnetic force microscopy has unsurpassed capabilities in analysis of nanoscale and microscale magnetic samples and devices. Similar to other Scanning Probe Microscopy techniques, quantitative analysis remains a challenge. Despite large theoretical and practical progress in this area, present methods are seldom used due to their complexity and lack of systematic understanding of related uncertainties and recommended best practice. Use of the Tip Transfer Function (TTF) is a key concept in making Magnetic Force Microscopy measurements quantitative. We present a numerical study of several aspects of TTF reconstruction using multilayer samples with perpendicular magnetisation. We address the choice of numerical approach, impact of non-periodicity and windowing, suitable conventions for data normalisation and units, criteria for choice of regularisation parameter and experimental effects observed in real measurements. We present a simple regularisation parameter selection method based on TTF width and verify this approach via numerical experiments. Examples of TTF estimation are shown on both 2D and 3D experimental datasets. We give recommendations on best practices for robust TTF estimation, including the choice of windowing function, measurement strategy and dealing with experimental error sources. A method for synthetic MFM data generation, suitable for large scale numerical experiments is also presented.
机译:磁力显微镜在分析纳米级和微米级磁性样品和设备方面具有无与伦比的功能。与其他扫描探针显微镜技术相似,定量分析仍然是一个挑战。尽管在该领域取得了巨大的理论和实践进展,但由于其复杂性以及对相关不确定性和推荐的最佳实践缺乏系统的了解,因此很少使用当前的方法。尖端传递函数(TTF)的使用是使磁力显微镜测量结果定量化的关键概念。我们目前使用多层垂直磁化样品对TTF重建的几个方面进行了数值研究。我们讨论数值方法的选择,非周期性和窗口化的影响,数据归一化和单位的合适约定,正则化参数的选择标准以及在实际测量中观察到的实验效果。我们提出了一种基于TTF宽度的简单正则化参数选择方法,并通过数值实验验证了这种方法。在2D和3D实验数据集上都显示了TTF估算的示例。我们提供有关可靠的TTF估计的最佳实践的建议,包括选择窗口功能,测量策略以及处理实验误差源。还提出了一种适用于大规模数值实验的合成MFM数据生成方法。

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