Padilla J M, Servin M, Estrada J C
Centro de Investigaciones en Óptica A. C. Loma del Bosque 115, Lomas del Campestre C.P.37150. León, Guanajuato, México.
Opt Express. 2011 Sep 26;19(20):19508-13. doi: 10.1364/OE.19.019508.
Pixelated phase-mask interferograms have become an industry standard in spatial phase-shifting interferometry. These pixelated interferograms allow full wavefront encoding using a single interferogram. This allows the study of fast dynamic events in hostile mechanical environments. Recently an error-free demodulation method for ideal pixelated interferograms was proposed. However, non-ideal conditions in interferometry may arise due to non-linear response of the CCD camera, multiple light paths in the interferometer, etc. These conditions generate non-sinusoidal fringes containing harmonics which degrade the phase estimation. Here we show that two-dimensional Fourier demodulation of pixelated interferograms rejects most harmonics except the complex ones at {-3(rd), +5(th), -7(th), +9(th), -11(th),…}. We propose temporal phase-shifting to remove these remaining harmonics. In particular, a 2-step phase-shifting algorithm is used to eliminate the -3(rd) and +5(th) complex harmonics, while a 3-step one is used to remove the -3(rd), +5<(th), -7(th) and +9(th) complex harmonics.
像素化相位掩膜干涉图已成为空间相移干涉测量中的行业标准。这些像素化干涉图允许使用单个干涉图进行全波前编码。这使得在恶劣机械环境中研究快速动态事件成为可能。最近,有人提出了一种针对理想像素化干涉图的无误差解调方法。然而,干涉测量中的非理想条件可能由于CCD相机的非线性响应、干涉仪中的多条光路等原因而出现。这些条件会产生包含谐波的非正弦条纹,从而降低相位估计的精度。在此我们表明,像素化干涉图的二维傅里叶解调可以去除除了 {-3次、+5次、-7次、+9次、-11次、…} 处的复谐波之外的大多数谐波。我们提出采用时间相移来去除这些剩余的谐波。具体而言,使用两步相移算法来消除 -3次和 +5次复谐波,而使用三步相移算法来去除 -3次、+5次、-7次和 +9次复谐波。