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High-speed polarized low coherence scanning interferometry based on spatial phase shifting

机译:基于空间移位的高速偏振低相干扫描干涉测量法

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摘要

In this investigation, we describe polarized low coherence scanning interferometry (PLCSI) to enhance the measurement speed based on the spatial phase shifting technique by using a polarized CMOS camera. In every scanning step, the visibility of the correlogram can be directly extracted by spatial phase shifting. PLCSI does not need any scanning conditions such as a scanning step size smaller than that determined by the Nyquist sampling limit and equidistant scanning step, which restrict the measurement speed of the typical low coherence scanning interferometry (LCSI). The measurement data can also be significantly reduced due to the larger scanning step size. PLCSI can be comparable to confocal scanning microscopy in the view of monitoring visibilities. In the experiments, three types of specimens such as a plane mirror, a concave mirror, and a step height specimen were measured by PLCSI with various scanning step sizes, and it was confirmed that the surface profiles were successfully reconstructed. Moreover, the compensation technique of the surface profile, precisely determined by the phase information, was also discussed. (C) 2019 Optical Society of America
机译:在该研究中,我们描述了通过使用偏振CMOS相机基于空间相移技术来增强测量速度的极化低相干扫描干涉法(PLCSI)。在每个扫描步骤中,可以通过空间移相移位直接提取相关性的可视性。 PLCSI不需要任何扫描条件,例如扫描台尺寸小于由奈奎斯特采样极限和等距扫描步骤确定的扫描台尺寸,其限制了典型的低相干扫描干扰测量法(LCSI)的测量速度。由于较大的扫描步长,也可以显着降低测量数据。 PLCSI可与相互作用的扫描显微镜相媲美,以便监控可见性。在实验中,通过PLCSI测量三种类型的样品,例如平面镜,凹面镜和阶梯高度样本,具有各种扫描步骤尺寸,并且证实了表面型材成功重建。此外,还讨论了由相位信息精确确定的表面轮廓的补偿技术。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第20期|共6页
  • 作者单位

    Chosun Univ Dept Photon Engn 309 Pilmun Daero Gwangju 61452 South Korea;

    Chosun Univ Dept Photon Engn 309 Pilmun Daero Gwangju 61452 South Korea;

    Chosun Univ Dept Photon Engn 309 Pilmun Daero Gwangju 61452 South Korea;

    Chosun Univ Dept Photon Engn 309 Pilmun Daero Gwangju 61452 South Korea;

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  • 正文语种 eng
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