Xue Xiaoju, Xu Bijun, Wu Bairui, Lin Jingwei, Wang Xiaogang, Yu Xinning, Lin Lu, Li Hongqiang
Opt Express. 2022 Jun 6;30(12):20389-20400. doi: 10.1364/OE.460193.
Airy beams exhibit intriguing characteristics, such as diffraction-free propagation, self-acceleration, and self-healing, which have aroused great research interest. However, the spatial light modulator that generates Airy beams has problems such as narrow operational bandwidth, high cost, poor phase discretization, and single realization function. In the visible region (λ∼532 nm), we proposed a switchable all-dielectric metasurface for generating transmissive and reflective two-dimensional (2D) Airy beams. The metasurface was mainly composed of titanium dioxide nanopillars and vanadium dioxide substrate. Based on the Pancharatnam-Berry phase principle, a high-efficient Airy beam can be generated by controlling the phase transition of vanadium dioxide and changing the polarization state of the incident light. The optimized optical intensity conversion efficiencies of the transmissive and reflective metasurfaces were as high as 97% and 70%, respectively. In the field of biomedical and applied physics, our designed switchable metasurface is expected to offer the possibility of creating compact optical and photonic platforms for efficient generation and dynamic modulation of optical beams and open up a novel path for the application of high-resolution optical imaging systems.
艾里光束具有诸如无衍射传播、自加速和自愈合等引人入胜的特性,这引起了极大的研究兴趣。然而,产生艾里光束的空间光调制器存在诸如工作带宽窄、成本高、相位离散化差和单一实现功能等问题。在可见光区域(λ∼532 nm),我们提出了一种可切换的全介质超表面,用于产生透射式和反射式二维(2D)艾里光束。该超表面主要由二氧化钛纳米柱和二氧化钒衬底组成。基于庞加莱-贝里相位原理,通过控制二氧化钒的相变并改变入射光的偏振态,可以产生高效的艾里光束。透射式和反射式超表面优化后的光强转换效率分别高达97%和70%。在生物医学和应用物理领域,我们设计的可切换超表面有望为创建用于高效产生和动态调制光束的紧凑型光学和光子平台提供可能性,并为高分辨率光学成像系统的应用开辟一条新途径。