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无需精确控制或校准相移的随机相移干涉测量法。

Random phase-shifting interferometry without accurately controlling or calibrating the phase shifts.

作者信息

Hao Qun, Zhu Qiudong, Hu Yao

机构信息

Opto-Electronic College, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Opt Lett. 2009 Apr 15;34(8):1288-90. doi: 10.1364/ol.34.001288.

Abstract

A random phase-shifting interferometry insensitive to environmental noises is proposed. The relationship between intensity and phase in each pixel is obtained from a large amount of phase-shifting interferograms. In the phase-solving algorithm, the phase shift step length is not taken as a parameter, but the temporal intensity maximum and minimum in each pixel are needed. For finding the extreme values, random passive phase shifts caused by environmental noises are adopted to make the intensity ergodic. Supplementary active phase shifts, which are not accurately controlled or calibrated, are performed to shorten the measurement cycle. Finally, averaging statistically uncorrelated data over a long enough period of time can effectively reduce most random errors. A minitype Fizeau interferometer applying this random phase-shifting method demonstrated the feasibility of it.

摘要

提出了一种对环境噪声不敏感的随机相移干涉术。从大量相移干涉图中获取每个像素的强度与相位之间的关系。在相位求解算法中,相移步长不作为参数,而是需要每个像素的时间强度最大值和最小值。为了找到极值,采用由环境噪声引起的随机被动相移以使强度遍历。进行补充的主动相移,其不受精确控制或校准,以缩短测量周期。最后,在足够长的时间内对统计不相关的数据进行平均可以有效减少大多数随机误差。应用这种随机相移方法的小型斐索干涉仪证明了其可行性。

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