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Coupling effects of refractive index discontinuity, spot size and spot location on the deflection sensitivity of optical-lever based atomic force microscopy

机译:折射率不连续性,光斑尺寸和光斑位置对基于光学杠杆的原子力显微镜的偏转灵敏度的耦合效应

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摘要

Atomic force microscopy (AFM) plays an essential role in nanotechnology and nanoscience. The recent advances of AFM in bionanotechnology include phase imaging of living cells and detection of biomolecular interactions in liquid biological environments. Deflection sensitivity is a key factor in both imaging and force measurement, which is significantly affected by the coupling effects of the refractive index discontinuity between air, the glass window and the liquid medium, and the laser spot size and spot location. The effects of both the spot size and the spot location on the sensitivity are amplified by the refractive index discontinuity. The coupling effects may govern a transition of the deflection sensitivity from enhancement to degradation. It is also found that there is a critical value for the laser spot size, above which the deflection sensitivity is mainly determined by the refractive index of the liquid. Experimental results, in agreement with theoretical predication, elucidate the coupling effects.
机译:原子力显微镜(AFM)在纳米技术和纳米科学中起着至关重要的作用。原子力显微镜在生物纳米技术方面的最新进展包括活细胞的相位成像和在液态生物环境中检测生物分子相互作用。偏转灵敏度是成像和力测量中的关键因素,它受到空气,玻璃窗和液体介质之间的折射率不连续性以及激光光斑尺寸和光斑位置的耦合效应的显着影响。光斑尺寸和光斑位置对灵敏度的影响都被折射率不连续性放大了。耦合效应可以控制偏转灵敏度从增强到退化的过渡。还发现对于激光光斑尺寸存在临界值,在该临界值以上,偏转灵敏度主要由液体的折射率确定。实验结果与理论预测相符,阐明了耦合效应。

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