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Noncontact lateral-force gradient measurement on Si(111)-7×7 surface with small-amplitude off-resonance atomic force microscopy

机译:用小振幅非共振原子力显微镜对Si(111)-7×7表面进行非接触侧向力梯度测量

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摘要

In this work, the authors report on a quantitative investigation of lateral-force gradient and lateral force between a tungsten tip and Si (111) - (7×7) surface using combined noncontact lateral-force microscopy and scanning tunneling microscopy. Simultaneous lateral-force gradient and scanning tunneling microscopy images of single and multiatomic step are obtained. In our measurement, tunnel current is used as feedback. The lateral-stiffness contrast has been observed to be 2.5 Nm at a single atomic step, in contrast to 13 Nm at a multiatomic step on Si (111) surface. They also carried out a series of lateral stiffness-distance spectroscopy, which show a sharp increase in tip-surface interaction stiffness as the sample is approached toward the surface. © 2009 American Vacuum Society.
机译:在这项工作中,作者报告了使用组合的非接触侧向力显微镜和扫描隧道显微镜对钨尖端与Si(111)-(7×7)表面之间的侧向力梯度和侧向力进行定量研究的情况。同时获得了单原子步和多原子步的横向力梯度和扫描隧道显微镜图像。在我们的测量中,隧道电流用作反馈。在Si(111)表面上,单原子步长的横向刚度对比为2.5 Nm,而在多原子步长的横向刚度对比为13 Nm。他们还进行了一系列的横向刚度-距离光谱分析,当样品接近表面时,尖端-表面相互作用刚度急剧增加。 ©2009美国真空协会。

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