基于应力梯度的新型AFM探针设计展望

Omar Alshehri, M. Al-Ghamdi, Mohamed Arabi, M. Khater, M. Bakri-Kassem, D. Yevick
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引用次数: 0

摘要

制备方法通常是为了消除残余应力而设计的,而大多数静电模型认为边缘场可以忽略不计。本文介绍的工作试图利用这两种方法来设计一种新的原子力显微镜探针。通过实验将残余应力引起的曲率从轮廓仪导出到COMSOL中,以显示曲率对两种不同光束长度下探针静态行为(直流电压下)的影响。结果表明,曲率可以使作用在探针上的力由排斥变为吸引,这与已有文献的结果相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospect of New AFM Probe Design Enabled by Stress Gradient
Fabrication recipes usually are designed to eliminate residual stress, while majority of electrostatic models considers fringing field to be negligible. The work presented here tries to make a benefit of these two to make a new design for an AFM probe. The curvature caused by residual stress was experimentally exported from profilometer into COMSOL to show the effect of curvature on the probe's static behavior (under DC voltage) at two different beam lengths. The results show that the curvature could turn the forcing on the probe from repulsive to attractive, which is analogues to results in existing literature.
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