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环境波动下相移干涉显微镜的亚纳米高度灵敏度

Sub-nanometer height sensitivity by phase shifting interference microscopy under environmental fluctuations.

作者信息

Ahmad Azeem, Dubey Vishesh, Butola Ankit, Tinguely Jean-Claude, Ahluwalia Balpreet Singh, Mehta Dalip Singh

出版信息

Opt Express. 2020 Mar 30;28(7):9340-9358. doi: 10.1364/OE.384259.

Abstract

Phase shifting interferometric (PSI) techniques are among the most sensitive phase measurement methods. Owing to its high sensitivity, any minute phase change caused due to environmental instability results into, inaccurate phase measurement. Consequently, a well calibrated piezo electric transducer (PZT) and highly-stable environment is mandatory for measuring accurate phase map using PSI implementation. Here, we present an inverse approach, which can retrieve phase maps of the samples with negligible errors under environmental fluctuations. The method is implemented by recording a video of continuous temporally phase shifted interferograms and phase shifts were calculated between all the data frames using Fourier transform algorithm with a high accuracy ≤ 5.5 × 10 π rad. To demonstrate the robustness of the proposed method, a manual translation of the stage was employed to introduce continuous temporal phase shift between data frames. The developed algorithm is first verified by performing quantitative phase imaging of optical waveguide and red blood cells using uncalibrated PZT under the influence of vibrations/air turbulence and compared with the well calibrated PZT results. Furthermore, we demonstrated the potential of the proposed approach by acquiring the quantitative phase imaging of an optical waveguide with a rib height of only 2 nm and liver sinusoidal endothelial cells (LSECs). By using 12-bit CMOS camera the height of shallow rib waveguide is measured with a height sensitivity of 4 Å without using PZT and in presence of environmental fluctuations.vn.

摘要

相移干涉测量(PSI)技术是最灵敏的相位测量方法之一。由于其高灵敏度,环境不稳定引起的任何微小相位变化都会导致相位测量不准确。因此,使用PSI实现精确测量相位图时,必须有经过良好校准的压电换能器(PZT)和高度稳定的环境。在此,我们提出一种逆向方法,该方法能够在环境波动下以可忽略不计的误差检索样品的相位图。该方法通过记录连续时间相移干涉图的视频来实现,并使用傅里叶变换算法在所有数据帧之间计算相位偏移,精度高达≤5.5×10 π rad。为了证明所提方法的稳健性,采用手动平移载物台在数据帧之间引入连续的时间相移。首先通过在振动/空气湍流影响下使用未校准的PZT对光波导和红细胞进行定量相位成像来验证所开发的算法,并与经过良好校准的PZT结果进行比较。此外,我们通过获取肋高仅为2 nm的光波导和肝窦内皮细胞(LSEC)的定量相位成像,展示了所提方法的潜力。通过使用12位CMOS相机,在不使用PZT且存在环境波动的情况下,以4 Å的高度灵敏度测量浅肋光波导的高度。

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