Abstract
A compact quadriwave lateral shearing interferometer (QWLSI) with strong adaptability and high precision is proposed based on a novel randomly encoded hybrid grating (REHG). By performing the inverse Fourier transform of the desired Fraunhofer diffraction orders, the amplitude and phase distributions of the ideally calculated quadriwave grating can be obtained. Then a phase chessboard is introduced to generate the same phase distribution, while the amplitude distribution can be achieved using the randomly encoding method by quantizing the radiant flux on the ideal quadriwave grating. As the Faunhofer diffraction of the REHG only contains the orders, no order selection mask is ever needed for the REHG-LSI. The simulations and the experiments show that the REHG-LSI exhibits strong adaptability, nice repeatability, and high precision.
© 2015 Optical Society of America
Full Article | PDF ArticleMore Like This
Tong Ling, Yongying Yang, Dong Liu, Xiumei Yue, Jiabin Jiang, Jian Bai, and Yibing Shen
Appl. Opt. 54(30) 8913-8920 (2015)
Jie Li, Feng Tang, Xiangzhao Wang, Fengzhao Dai, and Heng Zhang
Appl. Opt. 54(27) 8070-8079 (2015)
Yahui Zhu, Ailing Tian, Hang Yuan, Bingcai Liu, Hongjun Wang, Kexin Ren, Yuwen Zhang, Kai Wang, and Siqi Wang
Appl. Opt. 62(3) 654-664 (2023)