Liang Hangang, Yao Dong, Shen Honghai
Opt Express. 2022 Oct 24;30(22):40540-40556. doi: 10.1364/OE.469851.
White light scanning interferometry is a commonly used optical measurement method for three-dimensional (3D) surface profiles. In the case of large phase errors, accurate height values can generally be obtained indirectly from the interferometric signal envelope information derived using various envelope extraction methods. However, the current envelope extraction algorithms have the disadvantages of low robustness, increasing the half-width of the envelope information, and requiring correct parameter settings in advance. In this study, the pseudo Wigner-Ville distribution is modified and applied to white light scanning interferometric 3D measurement to avoid the above-mentioned drawbacks. Simulations and experiments are performed in a single-frequency mode (only the approximate central wave-number is used to guide both the proposed and wavelet transform methods). The simulation results prove that the proposed method has a 31.7% higher reconstruction accuracy than the wavelet transform method under a 25 dB signal to noise ratio condition. Concurrently, the proposed method is insensitive to the change in the central wavelength with a constant central wave-number parameter and has a good extraction effect for a long coherent length. The experiments measure standard step objects (VLSI standard, 1.761 ± 0.01 µm), and the reconstruction height error of the proposed method is 0.0035 µm. Simulations and experiments show that the proposed method can adaptively provide accurate envelope information after half-width reduction under the condition that only the approximate central wave-number a priori knowledge is used. Simultaneously, the proposed method is shown to be robust and effective.
白光扫描干涉测量法是一种常用的用于测量三维(3D)表面轮廓的光学测量方法。在存在较大相位误差的情况下,通常可以从使用各种包络提取方法得到的干涉信号包络信息中间接获得准确的高度值。然而,当前的包络提取算法存在稳健性低、增加包络信息半高宽以及需要预先设置正确参数等缺点。在本研究中,对伪维格纳-威利分布进行了改进并应用于白光扫描干涉三维测量,以避免上述缺点。在单频模式下进行了仿真和实验(仅使用近似中心波数来指导所提出的方法和小波变换方法)。仿真结果表明,在25 dB信噪比条件下,所提出的方法比小波变换方法的重建精度高31.7%。同时,在所提出的方法中,在中心波数参数不变的情况下,对中心波长的变化不敏感,并且对于长相干长度具有良好的提取效果。实验测量了标准台阶物体(超大规模集成电路标准,1.761±0.01 µm),所提出方法的重建高度误差为0.0035 µm。仿真和实验表明,在所提出的方法中,在仅使用近似中心波数先验知识的条件下,经过半高宽缩减后能够自适应地提供准确的包络信息。同时,所提出的方法具有稳健性且有效。