Jia Delin, Tian Yuan, Ma Wei, Gong Xiaofeng, Yu Jiayi, Zhao Guozhong, Yu Xiaomei
Opt Lett. 2017 Nov 1;42(21):4494-4497. doi: 10.1364/OL.42.004494.
In this paper, we report a transmissive terahertz (THz) metalens based on a dielectric metasurface that consists of periodically arranged sub-wavelength silicon cross resonators with a spatially hyperboloidal phase profile. By varying arm lengths of the cross resonators, we obtained a full 2π phase coverage with high transmission at target frequency. The fabricated metalens was experimentally demonstrated to focus a continuous THz beam to a spot with a full width at half-maximum of 630 μm at a focal length of 28 mm, which agrees well with the theoretical calculation. This device has potential for applications in THz imaging and communications, and our work can also easily be extended in the design of other planar THz components, such as beam deflectors or vortex plates.
在本文中,我们报道了一种基于介质超表面的透射式太赫兹(THz)超透镜,该超表面由周期性排列的亚波长硅十字谐振器组成,具有空间双曲面相位分布。通过改变十字谐振器的臂长,我们在目标频率下获得了全2π相位覆盖且具有高透射率。实验证明,所制备的超透镜能够将连续太赫兹光束聚焦到焦距为28mm处半高宽为630μm的光斑上,这与理论计算结果吻合良好。该器件在太赫兹成像和通信方面具有应用潜力,并且我们的工作在其他平面太赫兹组件(如光束偏转器或涡旋板)的设计中也能够轻松扩展。