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Mapping of lateral vibration of the tip in atomic force microscopy at the torsional resonance of the cantilever

机译:原子力显微镜中悬臂扭转共振时尖端横向振动的映射

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摘要

Lateral vibration of the tip in atomic force microscopy was mapped at the torsional resonance of the cantilever by attaching a shear piezo element at the base of the cantilever or under the sample. Fixed frequency excitation and self-excitation of torsional motion were implemented. The lateral vibration utilized as measured by an optical lever was in the order of 10pm to 3 nm, and its frequency approximately 450kHz for a contact-mode silicon nitride cantilever. The amplitude and phase of the torsional motion of the cantilever was measured by a lock-in-amplifier or a rectifier and plotted in x and y as the sample was raster scanned. The imaging technique gave contrast between graphite terraces, self-assembled monolayer domains, silicon and silicon dioxide, graphite and mica. Changing contrast was observed as silicon islands oxidized in atmosphere, showing that the imaging technique can detect change in lateral tip mobility due to changes occurring near the surface. Torsional self-excitation showed nanometric features of self-assembled monolayer islands due to different lateral dissipation. Dependence of torsional resonance frequency on excitation amplitude, and contrast change due to driving frequency around resonance were observed.
机译:通过将剪切压电元件连接到悬臂的底部或样品下方,在原子力显微镜中观察到尖端的横向振动在悬臂的扭转共振处。实施了固定频率的激励和扭转运动的自激励。通过光杠杆测量的横向振动约为10pm至3 nm,对于接触式氮化硅悬臂梁,其频率约为450kHz。通过锁定放大器或整流器测量悬臂的扭转运动的幅度和相位,并在对样品进行光栅扫描时以x和y绘制。成像技术给出了石墨台阶,自组装单层畴,硅和二氧化硅,石墨和云母之间的对比。观察到随着硅岛在大气中被氧化,对比度发生了变化,这表明成像技术可以检测到由于表面附近发生的变化而引起的横向尖端迁移率的变化。扭转自激由于不同的横向耗散而显示出自组装单层岛的纳米特征。观察到扭转共振频率对激励振幅的依赖性,以及由于共振附近的驱动频率引起的对比度变化。

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