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Optical contrast mechanisms and shear force interactions in near-field scanning optical microscopy.

机译:近场扫描光学显微镜中的光学对比机制和剪切力相互作用。

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摘要

This dissertation investigates mechanisms that influence image formation in near-field scanning optical microscopy (NSOM) performed with tapered fiber aperture probes. Both the generation of optical contrast for transmission mode NSOM and the force interaction between the probe and sample that is the basis for topographic imaging by shear force microscopy (SFM) are studied.;A brief introduction and review of the field of NSOM are given. The lack of understanding in the previous work of the optical and force interactions between the probe and sample is cited as the motivation for the present investigation.;A theoretical model is developed that describes the linear scattering of the probe's source field by the complex transmittance of the sample. The imaging of subwavelength features is shown to arise from the spatial mixing of the evanescent waves of the probe's source field with the high spatial frequencies of the object. Calculations of the optical transfer function are presented.;The shear force servo that regulates the probe-to-sample separation and facilitates the acquisition of SFM imagery is extensively analyzed. The optical detection scheme that measures the dither vibration of the probe is characterized in order to optimize the servo performance. The shear force interaction is then analyzed by modeling the probe as a simple harmonic oscillator. Measurements of the probe's resonant response while interacting with the sample reveal that the shear force is mainly frictional. The magnitude of the force is derived, and limitations on its measurement are established through analysis of the minimum detectable displacement of the probe. The servo performance is shown to be shot noise limited, as opposed to being limited by the thermal vibration noise of the probe.;Experimental SFM and NSOM images of various grating structures and optical data storage materials are presented. The optical contrast mechanisms displayed in the images are identified. Linear scattering generally dominates the contrast, but some images exhibit unique near-field effects due to probe-sample interactions that lead to nonlinear imaging behavior. The origin of these interactions is the boundary conditions imposed on the probe's aperture by the sample's composition and structure.
机译:本文研究了影响锥形光纤孔径探针进行近场扫描光学显微镜(NSOM)中图像形成的机制。研究了透射模态NSOM的光学对比度的产生以及探针与样品之间的力相互作用,这是通过剪切力显微镜(SFM)进行形貌成像的基础。给出了NSOM领域的简要介绍和综述。以前的工作中对探针和样品之间的光学和力相互作用的缺乏理解被认为是本研究的动机。;建立了一个理论模型,该模型描述了探针源场的线性散射,该散射是通过探针的复杂透射率实现的。例子。亚波长特征的成像显示是由于探头源场的the逝波与物体的高空间频率的空间混合而产生的。提出了光学传递函数的计算。广泛分析了调节探针与样品分离并促进SFM图像采集的剪切力伺服系统。为了优化伺服性能,对测量探头抖动振动的光学检测方案进行了表征。然后通过将探头建模为简单的谐波振荡器来分析剪切力的相互作用。探针与样品相互作用时的共振响应测量表明,剪切力主要是摩擦力。得出力的大小,并通过分析探头的最小可检测位移来确定其测量限制。伺服性能受到散粒噪声的限制,而不是受探头的热振动噪声的限制。;给出了各种光栅结构和光学数据存储材料的实验SFM和NSOM图像。识别图像中显示的光学对比机制。线性散射通常主导对比度,但由于探针与样品的相互作用会导致非线性成像行为,因此某些图像会表现出独特的近场效应。这些相互作用的起源是由样品的成分和结构强加在探针孔径上的边界条件。

著录项

  • 作者

    Froehlich, Fred Franklin.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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