Heiden Jacob T, Jang Min Seok
School of Electrical Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.
Nanophotonics. 2022 Jan 4;11(3):583-591. doi: 10.1515/nanoph-2021-0638. eCollection 2022 Jan.
Controlling the wavefront of light, especially on a subwavelength scale, is pivotal in modern optics. Metasurfaces present a unique platform for realizing flat lenses, called metalenses, with thicknesses on the order of the wavelength. Despite substantial effort, however, suppressing the chromatic aberrations over large operational bandwidths of metalenses still remains a challenge. Here, we develop a systematic design method enabling a simultaneous, polarization-insensitive control of the phase and the group delay of a light beam based on libraries of transmission-mode dielectric meta-elements. Mid-infrared achromatic metalenses are designed and theoretically analyzed to have diffraction-limited focal spots with vanishing chromatic aberrations in the operating wavelength range of 6-8.5 μm, while maintaining high focusing efficiencies of 41% on average. The proposed methodology, which can be used as a general design rule for all spectra, also provides a versatile design scheme for ultrashort pulse focusing and achromatic vortex-beam generation (orbital angular momentum), representing a major advance toward practical implementations of functional metalenses.
控制光的波前,尤其是在亚波长尺度上,在现代光学中至关重要。超表面为实现称为超透镜的平面透镜提供了一个独特的平台,其厚度在波长量级。然而,尽管付出了巨大努力,在超透镜的大工作带宽上抑制色差仍然是一个挑战。在此,我们基于传输模式介电超元件库开发了一种系统设计方法,能够对光束的相位和群延迟进行同时、偏振不敏感的控制。设计并理论分析了中红外消色差超透镜,使其在6 - 8.5μm的工作波长范围内具有衍射极限焦斑且色差消失,同时平均保持41%的高聚焦效率。所提出的方法可作为所有光谱的通用设计规则,还为超短脉冲聚焦和消色差涡旋光束产生(轨道角动量)提供了一种通用设计方案,代表了功能性超透镜实际应用的一大进步。