Yang Mengyu, Shen Xin, Li Ziping, Wen Zhongquan, Chen Gang, Zhang Zhihai, Liang Gaofeng, Li Hua, Shang Zhengguo
Opt Lett. 2023 Sep 1;48(17):4677-4680. doi: 10.1364/OL.498397.
Metalenses have been widely investigated for their features of high design freedom. For practical applications, it is necessary to maximize the efficiency of the metalens. However, it is a great challenge to realize both a high numerical aperture (NA) and high-efficiency metalens in the community. Here, we introduce a method to design a hybrid metalens with a large numerical aperture and high focusing efficiency at terahertz frequency. The hybrid metalens consists of gradient metasurfaces in the central area and metagrating in the peripheral area to achieve high-efficiency beam focusing. To verify this concept, a hybrid metalens with a numerical aperture of 0.95 was designed at λ = 118.8 μm. The simulation results demonstrate that the focusing efficiency of the hybrid metalens is 65.8%. The experimental results show that the designed metalens is able to increase the focusing efficiency from 22.8% to 41.7%. The full widths at half maxima (FWHMs) of the focused spots of the hybrid metalens in the x direction and y direction are 0.72λ and 0.45λ, respectively. The proposed high-efficiency hybrid metalens has promising application prospects in various applications of a complex optical system.
由于具有高度的设计自由度,超构透镜已得到广泛研究。对于实际应用而言,有必要将超构透镜的效率最大化。然而,在该领域实现高数值孔径(NA)和高效超构透镜是一项巨大挑战。在此,我们介绍一种在太赫兹频率下设计具有大数值孔径和高聚焦效率的混合超构透镜的方法。该混合超构透镜由中心区域的梯度超表面和外围区域的超光栅组成,以实现高效光束聚焦。为验证这一概念,在λ = 118.8 μm处设计了一个数值孔径为0.95的混合超构透镜。模拟结果表明,该混合超构透镜的聚焦效率为65.8%。实验结果表明,所设计的超构透镜能够将聚焦效率从22.8%提高到41.7%。该混合超构透镜在x方向和y方向上聚焦光斑的半高宽(FWHM)分别为0.72λ和0.45λ。所提出的高效混合超构透镜在复杂光学系统的各种应用中具有广阔的应用前景。