Lu Peiyao, Zhou Changda, Mou Zhen, Liu Danhua, Teng Shuyun
Shandong Provincial Engineering and Technical Center of Light Manipulations & Shandong Provincial Key Laboratory of Optics and Photonic Device, School of Physics and Electronics, Shandong Normal University, Jinan 250014, China.
Nanomaterials (Basel). 2021 Aug 18;11(8):2091. doi: 10.3390/nano11082091.
The phase delays introduced by anisotropic nanounits include propagation phase delay, resonant phase delay and geometric phase delay. Various phase devices can be formed based on the metasurfaces consisting of anisotropic nanounits and the phase devices of the same kind function have different performances because of different working modes. In this paper, metalenses and vortex metalenses are chosen as examples to compare the optical performance of metasurface phase devices based on three kinds of phase compensation techniques. We design separately three kinds of metalenses and vortex metalenses using the cross nanoholes, L-shaped nanohole and V-shaped nanoholes and simulate numerically their intensity and phase distributions. Additionally, the results show the differences among these elements in structure complexity, polarization dependence, working efficiency and phase uniformity. The comparison for three kinds of metalenses clearly shows the merits of different phase compensation techniques and this work must be helpful for expanding the practical applications of metasurfaces.
各向异性纳米单元引入的相位延迟包括传播相位延迟、共振相位延迟和几何相位延迟。基于由各向异性纳米单元组成的超表面可以形成各种相位器件,并且同类功能的相位器件由于工作模式不同而具有不同的性能。本文以金属透镜和涡旋金属透镜为例,比较基于三种相位补偿技术的超表面相位器件的光学性能。我们分别使用十字形纳米孔、L形纳米孔和V形纳米孔设计了三种金属透镜和涡旋金属透镜,并对它们的强度和相位分布进行了数值模拟。此外,结果显示了这些元件在结构复杂性、偏振依赖性、工作效率和相位均匀性方面的差异。对三种金属透镜的比较清楚地显示了不同相位补偿技术的优点,这项工作对于扩展超表面的实际应用必定有所帮助。