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Multiscaling behavior of atomic-scale friction

机译:原子尺度摩擦的多念度行为

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摘要

The scaling behavior of friction between rough surfaces is a well-known phenomenon. It might be asked whether such a scaling feature also exists for friction at an atomic scale despite the absence of roughness on atomically flat surfaces. Indeed, other types of fluctuations, e.g., thermal and instrumental fluctuations, become appreciable at this length scale and can lead to scaling behavior of the measured atomic-scale friction. We investigate this using the lateral force exerted on the tip of an atomic force microscope (AFM) when the tip is dragged over the clean NaCl (001) surface in ultra-high vacuum at room temperature. Here the focus is on the fluctuations of the lateral force profile rather than its saw-tooth trend; we first eliminate the trend using the singular value decomposition technique and then explore the scaling behavior of the detrended data, which contains only fluctuations, using the multifractal detrended fluctuation analysis. The results demonstrate a scaling behavior for the friction data ranging from 0.2 to 2 nm with the Hurst exponent H = 0.61 ± 0.02 at a 1σ confidence interval. Moreover, the dependence of the generalized Hurst exponent, h(q), on the index variable q confirms the multifractal or multiscaling behavior of the nanofriction data. These results prove that fluctuation of nanofriction empirical data has a multifractal behavior which deviates from white noise.
机译:粗糙表面之间摩擦的缩放行为是众所周知的现象。尽管在原子平面上没有粗糙度,但可能会询问这种缩放特征是否存在以原子标度的摩擦。实际上,其他类型的波动,例如热和仪器波动,在这种长度尺度上变得可观,并且可以导致测量的原子级摩擦的缩放行为。当在室温下超高真空中的尖端拖动尖端在清洁NaCl(001)表面上拖动尖端时,使用施加在原子力显微镜(AFM)上的横向的横向力来研究该方法。这里的重点是侧向力曲线的波动而不是其锯齿趋势;我们首先使用奇异值分解技术消除该趋势,然后探讨了使用多重反转波动分析的减法数据的缩放行为,该数据仅包含波动。结果表明,在1σ置信区间,肿瘤指数H = 0.61±0.02的摩擦数据的缩放行为为0.2至2nm。此外,广义肿瘤指数H(Q)在索引变量Q上的依赖性证实了纳米级数据的多千分比或多尺度行为。这些结果证明了纳米型经验数据的波动具有偏离白噪声的多重行为。

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