Dong Xipu, Cheng Jierong, Fan Fei, Chang Shengjiang
Opt Lett. 2019 Feb 15;44(4):939-942. doi: 10.1364/OL.44.000939.
A large-angle anomalous reflector based on a low-index polylactic acid metagrating is designed around 140 GHz. By breaking the limit of fixed bar-to-bar distance and directing the beam into the second diffraction order through the optimization of the 4π phase supercell, the efficiencies for 70° and 80° reflection under normal excitation both reach 0.82 with a wide bandwidth. In contrast, the efficiency is less than 0.2 in conventional designs. The success of the second-order low-index metagrating for large-angle deflection originates from the appropriate number of Bloch modes with well-engineered mode interactions and couplings. The design can be potentially fabricated by three-dimensional printing, with promising applications in designing flat lenses of high numerical aperture and extending the material system of metadevices.
一种基于低折射率聚乳酸超光栅的大角度异常反射器设计在140GHz左右。通过突破固定条间距的限制,并通过优化4π相位超胞将光束引导到二级衍射级,在正常激发下70°和80°反射的效率在宽带宽下均达到0.82。相比之下,传统设计中的效率小于0.2。用于大角度偏转的二级低折射率超光栅的成功源于具有精心设计的模式相互作用和耦合的适当数量的布洛赫模式。该设计有望通过三维打印制造,在设计高数值孔径的平面透镜和扩展超表面器件的材料体系方面具有广阔的应用前景。