Qi Peiliang, Wang Jinyu, Yang Yi, Yuan Xinyi, Ye Tian, Lin Ayuan, Zhang Yuanying, Huang Zhiyun, Tan Xiaodi
Opt Express. 2022 Dec 19;30(26):47264-47279. doi: 10.1364/OE.472855.
Polarization is a natural property of a lightwave and makes a significant contribution to various scientific and technological applications, due to the different states of polarization (SoP) of a lightwave that may manifest distinct behaviors. Hence, it is important to determine the SoP of the lightwave. Generally, the SoP of a lightwave can be recognized by the Stokes parameters. In this paper, we proposed a novel method to simultaneously characterize the Stokes parameters of a lightwave, by employing the tensor polarization holography theory. This is done through merely a piece of polarization-sensitive material. Compared with the traditional method, this method requires only one measurement to obtain all the Stokes parameters, without using additional polarizing elements. The experimental result shows excellent agreement with the theoretical one, which confirmed the reliability and accuracy of the proposed method. We believe that this work may broaden the application field of polarization holography.
偏振是光波的一种自然属性,由于光波的不同偏振态(SoP)可能表现出不同的行为,它对各种科学和技术应用有着重要贡献。因此,确定光波的SoP很重要。一般来说,光波的SoP可以通过斯托克斯参数来识别。在本文中,我们提出了一种利用张量偏振全息理论同时表征光波斯托克斯参数的新方法。这只需通过一块偏振敏感材料就能实现。与传统方法相比,该方法仅需一次测量就能获得所有斯托克斯参数,无需使用额外的偏振元件。实验结果与理论结果高度吻合,证实了所提方法的可靠性和准确性。我们相信这项工作可能会拓宽偏振全息术的应用领域。