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首页> 外文期刊>Nanotechnology >3D finite element analysis of electrostatic deflection and shielding of commercial and FIB-modified cantilevers for electric and Kelvin force microscopy: II. Rectangular shaped cantilevers with asymmetric pyramidal tips
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3D finite element analysis of electrostatic deflection and shielding of commercial and FIB-modified cantilevers for electric and Kelvin force microscopy: II. Rectangular shaped cantilevers with asymmetric pyramidal tips

机译:电动和开尔文力显微镜的商用和FIB改性悬臂的静电偏转和屏蔽的3D有限元分析:II。具有不对称金字塔形尖端的矩形悬臂

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摘要

This paper deals with an application of 3D finite element analysis to the electrostatic interaction between (i) a commercial rectangular shaped cantilever (with an integrated anisotropic pyramidal tip) and a conductive sample, when a voltage difference is applied between them, and (ii) a focused ion beam (FIB) modified cantilever in order to realize a probe with reduced parasitic electrostatic force. The 3D modelling of their electrostatic deflection was realized by using multiphysics finite element analysis software and applied to the real geometry of the cantilevers and probes as used in conventional electric and Kelvin force microscopy to evaluate the contribution of the various part of a cantilever to the total force, and derive practical criteria to optimize the probe performances. We report also on the simulation of electrostatic shielding of nanometric features, in order to quantitatively evaluate an alternative way of reducing the systematic error caused by the cantilever-to-sample capacitive coupling. Finally, a quantitative comparison between the performances of rectangular and triangular cantilevers (part I of this work) is reported.
机译:本文研究了3D有限元分析在(i)商业矩形悬臂(具有集成的各向异性锥体尖端)和导电样品之间的静电相互作用中的应用,当它们之间施加电压差时,以及(ii)聚焦离子束(FIB)修饰的悬臂,以实现具有减小的寄生静电力的探针。通过使用多物理场有限元分析软件实现了其静电挠度的3D建模,并将其应用于常规电动显微镜和开尔文力显微镜中悬臂和探头的真实几何形状,以评估悬臂各部分对总悬臂的贡献力,并得出实用标准以优化探头性能。我们还报告了纳米特征的静电屏蔽仿真,以便定量评估减少悬臂至样品电容耦合引起的系统误差的另一种方法。最后,报告了矩形和三角形悬臂的性能之间的定量比较(这项工作的第一部分)。

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