International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology, and Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, Shenzhen University, Shenzhen, 518060, P. R. China.
Sci Rep. 2017 Jul 28;7(1):6814. doi: 10.1038/s41598-017-07217-5.
Singular beams which possess helical phase wavefront or spatially inhomogeneous polarization provide new freedom for optical field manipulation. However, conventional schemes to produce the singular beams have difficulty in realizing the flexible switch between different singular beams. In this work, we have experimentally demonstrated the capability of dielectric metasurfaces to generate three types of singular beams and switch between them at working wavelength of 1550 nm. We have shown vortex beam and cylindrical vector beam generation with single metasurface and cylindrical vector vortex beam generation with two cascaded metasurfaces. Moreover, experimental demonstration on switching cylindrical vector beam into vortex beam has also been done by combining one quarter-wave plate and a Glan laser polarizer. The experimental results match well with the analysis from the Jones matrix calculations. The average conversion efficiency of cylindrical vector beam to vortex beam was estimated to be 47.7%, which was about 2.3% lower than the theoretical prediction.
具有螺旋相位波前或空间非均匀偏振的奇异光束为光场操控提供了新的自由度。然而,传统产生奇异光束的方案难以实现不同奇异光束之间的灵活切换。在这项工作中,我们通过实验证明了介电超表面在 1550nm 工作波长下产生三种类型的奇异光束并进行切换的能力。我们展示了通过单个超表面产生涡旋光束和圆柱矢量光束,以及通过两个级联超表面产生圆柱矢量涡旋光束。此外,我们还通过组合一个四分之一波片和格兰激光偏光器,实现了将圆柱矢量光束切换为涡旋光束的实验演示。实验结果与琼斯矩阵计算的分析吻合较好。圆柱矢量光束到涡旋光束的平均转换效率估计为 47.7%,比理论预测低约 2.3%。