Zhao Zihan, Ding Xumin, Zhang Kuang, Fu Jiahui, Burokur Shah Nawaz, Wu Qun
Opt Lett. 2021 Oct 15;46(20):5220-5223. doi: 10.1364/OL.439155.
Self-accelerating optical Airy beams present attractive characteristics such as self-bending and non-diffraction, which have rendered this field a research hotspot in recent years. In this paper, the desired phase changes of the unit cell structure for the transmitted cross-polarized wave can be realized by modifying the rotation angle of the unit cell, while the amplitude can be modulated by changing the inner diameter of the double layer split-ring resonator (SRR). As such, the amplitude and phase modulations can be performed simultaneously and independently to achieve the desired transmitted wave envelope. Furthermore, a novel, to the best of our knowledge, strategy of 2D Airy beam deflection control is also presented by simultaneously modifying the phase and amplitude of the envelope of the transmitted beam, and its feasibility is theoretically and experimentally demonstrated. Our proposed designs suggest high application potentials in the fields of optical particle manipulation, controllable wireless energy transmission, and complex terrain exploration.
自加速光学艾里光束具有诸如自弯曲和无衍射等吸引人的特性,这使得该领域近年来成为研究热点。在本文中,通过改变单元胞的旋转角度可以实现透射交叉极化波的单元胞结构所需的相位变化,而幅度可以通过改变双层开口环谐振器(SRR)的内径来调制。这样,可以同时且独立地进行幅度和相位调制,以实现所需的透射波包络。此外,据我们所知,还通过同时修改透射光束包络的相位和幅度提出了一种新颖的二维艾里光束偏转控制策略,并在理论和实验上证明了其可行性。我们提出的设计在光学粒子操纵、可控无线能量传输和复杂地形探测等领域显示出很高的应用潜力。