论文标题
二维波前操纵的高质量系数
High quality factor metasurfaces for two-dimensional wavefront manipulation
论文作者
论文摘要
光与微型和纳米结构的强相互作用在光学传感,非线性光学,主动光学设备和量子光学器件中起着至关重要的作用。但是,对于波前塑形,在亚波长度上所需的局部控制限制了这种相互作用,通常会导致低质量的离子光学设备。在这里,我们通过利用高阶MIE共振,在两个空间维度上展示了两个空间维度的高质量波动波沿形状的途径。我们设计并在实验上实现了透射型带滤波器,梁偏转器和径向镜头,并在近红外波长下具有202-1475范围内测量的质量因子。激发的光学模式和由此产生的波前控制都是局部的,可以用有限的光圈和倾斜照明进行多功能操作。我们的结果比以前的局部模式设计相比,质量因素的改善近两个数量级,并为新的紧凑型光学设备提供了设计方法。
The strong interaction of light with micro- and nanostructures plays a critical role in optical sensing, nonlinear optics, active optical devices, and quantum optics. However, for wavefront shaping, the required local control over light at a subwavelength scale limits this interaction, typically leading to low-quality-factor optical devices. Here, we demonstrate an avenue towards high-quality-factor wavefront shaping in two spatial dimensions based on all-dielectric Huygens metasurfaces by leveraging higher-order Mie resonances. We design and experimentally realize transmissive band stop filters, beam deflectors and radial lenses with measured quality factors in the range of 202-1475 at near-infrared wavelengths. The excited optical mode and resulting wavefront control are both local, allowing versatile operation with finite apertures and oblique illumination. Our results represent an improvement in quality factor by nearly two orders of magnitude over previous localized mode designs, and provide a design approach for a new class of compact optical devices.