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Wavelet Transforms to Probe the Torsional Modes of a Thermally Excited Cantilever across the Jump-to-Contact Transition: Preliminary Results

机译:小波变换探测跨跃点到接触跃迁的热激发悬臂的扭转模式:初步结果

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The response of the torsional modes of a thermally excited cantilever across the jump-to-contact transition shows a modification of the oscillation amplitude, frequency, and damping. The measurement of these parameters is important because their analysis provides nanoscale information on the physical, chemical, and topographic properties of the sample. The tip-surface interaction potential is usually reconstructed by Fourier analysis of the cantilever oscillations around its equilibrium position. However, Fourier analysis can be correctly interpreted only in the case of stationary systems. The wavelet transform analysis overcomes these limitations, revealing the temporal evolution of the spectral content of a temporal trace. The one-dimensional time signal from the photodiode is converted into a two-dimensional time-frequency topography, which simultaneously exhibits the time and frequency behavior of the cantilever thermal fluctuations. In the present study, we show preliminary data obtained using wavelet transforms to analyze thermally excited torsional cantilever modes during jump-to-contact transition on a highly oriented pyrolitic graphite surface in air. [DOI: 10.1380/ejssnt.2011.228]
机译:跨跃点到接触跃迁的热激发悬臂的扭转模式响应显示出振荡幅度,频率和阻尼的变化。这些参数的测量很重要,因为它们的分析提供了有关样品的物理,化学和地形特性的纳米级信息。通常通过对悬臂在其平衡位置附近的振动进行傅立叶分析来重建尖端表面的相互作用势。但是,仅在固定系统的情况下才能正确解释傅里叶分析。小波变换分析克服了这些限制,揭示了时间轨迹的频谱内容的时间演变。来自光电二极管的一维时间信号被转换为二维时频形貌,同时显示出悬臂热波动的时间和频率特性。在本研究中,我们显示了使用小波变换获得的初步数据,以分析空气中高度定向的热解石墨表面跃迁到接触跃迁期间的热激发扭转悬臂模态。 [DOI:10.1380 / ejssnt.2011.228]

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