Chen Huan, Wang Zixin, Chen Xin, Wang Junli
School of Physics, Xidian University, Xi'an 710071, China.
Guangzhou Institute of Technology, Xidian University, Guangzhou 510555, China.
Sensors (Basel). 2024 Dec 25;25(1):55. doi: 10.3390/s25010055.
Existing tunable optical metasurfaces based on the electro-optic effect are either complex in structure or have a limited phase modulation range. In this paper, a simple rectangular metasurface structure based on a Pb(MgNb)O-PbTiO (PMN-PT) crystal with high electro-optic coefficient of 120 pm/V was designed to demonstrate its electrically tunable performance in the optical communication band through simulations. By optimizing the structure parameters, a tunable metasurface was generated that can induce a complete 2π phase shift for beam deflection while maintaining relatively uniform transmittance. Simulations further demonstrated the electrical tunability of the beam deflection direction and operating wavelength of the metasurface. This tunable optical metasurface, with its simple and easily fabricated structure, can promote the development and application of multifunctional and controllable metasurfaces. Its adjustable beam deflection direction and operating wavelength may find applications in fields such as optical communication systems and imaging.
现有的基于电光效应的可调谐光学超表面要么结构复杂,要么相位调制范围有限。本文设计了一种基于具有120 pm/V高电光系数的Pb(MgNb)O-PbTiO(PMN-PT)晶体的简单矩形超表面结构,通过模拟展示其在光通信波段的电可调谐性能。通过优化结构参数,生成了一种可调谐超表面,它可以在保持相对均匀透射率的同时,为光束偏转诱导完整的2π相移。模拟进一步证明了超表面光束偏转方向和工作波长的电可调性。这种可调谐光学超表面结构简单且易于制造,可促进多功能和可控超表面的发展与应用。其可调节的光束偏转方向和工作波长可能在光通信系统和成像等领域找到应用。