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Phase imaging and detection in pseudo-heterodyne scattering scanning near-field optical microscopy measurements

机译:伪外差散射扫描近场光学显微镜测量中的相位成像和检测

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摘要

When considering the pseudo-heterodyne mode for detection of the modulus and phase of the near field from scattering scanning near-field optical microscopy (s-SNOM) measurements, processing only the modulus of the signal may produce an undesired constraint in the accessible values of the phase of the near field. A two-dimensional analysis of the signal provided by the data acquisition system makes it possible to obtain phase maps over the whole [0, 2p) range. This requires post-processing of the data to select the best coordinate system in which to represent the data along the direction of maximum variance. The analysis also provides a quantitative parameter describing how much of the total variance is included within the component selected for calculation of the modulus and phase of the near field. The dependence of the pseudo-heterodyne phase on the mean position of the reference mirror is analyzed, and the evolution of the global phase is extracted from the s-SNOM data. The results obtained from this technique compared well with the expected maps of the near-field phase obtained from simulations. (C) 2017 Optical Society of America
机译:当考虑伪外差模式检测近场的模量和散射扫描近场光学显微镜(S-SNOM)测量时,仅处理信号的模量可能在可接近值中产生不期望的约束近场的阶段。通过数据采集系统提供的信号的二维分析使得可以在整个[0,2p)范围内获得相位映射。这需要对数据的后处理来选择最佳坐标系,其中沿最大方差方向表示数据。分析还提供了一种定量参数,其描述了在选择用于计算近场的模量和相位的组件内包括多少总方差。分析伪外差相对参考镜的平均位置的依赖性,并且从S-SNOM数据中提取全局阶段的演化。从该技术获得的结果与从模拟中获得的近场阶段的预期地图进行了比较。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第4期|共9页
  • 作者单位

    Univ North Carolina Charlotte Phys &

    Opt Sci Dept 9201 Univ Blvd Charlotte NC 28223 USA;

    Univ North Carolina Charlotte Phys &

    Opt Sci Dept 9201 Univ Blvd Charlotte NC 28223 USA;

    Missouri Univ Sci &

    Technol Mech &

    Aerosp Engn 400W 13th Str Rolla Rolla MO 65409 USA;

    Univ North Carolina Charlotte Phys &

    Opt Sci Dept 9201 Univ Blvd Charlotte NC 28223 USA;

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  • 正文语种 eng
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