Orazbayev B, Beruete M, Khromova I
Opt Express. 2016 Apr 18;24(8):8848-61. doi: 10.1364/OE.24.008848.
We demonstrate tunable mid-infrared (MIR) beam steering devices based on multilayer graphene-dielectric metamaterials. The effective refractive index of such metamaterials can be manipulated by changing the chemical potential of each graphene layer. This can arbitrarily tailor the spatial distribution of the phase of the transmitted beam, providing mechanisms for active beam steering. Three different beam steerer (BS) designs are discussed: a graded-index (GRIN) graphene-based metamaterial block, an array of metallic waveguides filled with graphene-dielectric metamaterial and an array of planar waveguides created in a graphene-dielectric metamaterial block with a specific spatial profile of graphene sheets doping. The performances of the BSs are numerically analyzed, showing the tunability of the proposed designs for a wide range of output angles (up to approximately 70°). The proposed graphene-based tunable beam steering can be used in tunable transmitter/receiver modules for infrared imaging and sensing.
我们展示了基于多层石墨烯-电介质超材料的可调谐中红外(MIR)光束转向装置。通过改变每个石墨烯层的化学势,可以操纵这种超材料的有效折射率。这可以任意调整透射光束相位的空间分布,提供主动光束转向的机制。讨论了三种不同的光束转向器(BS)设计:基于渐变折射率(GRIN)石墨烯的超材料块、填充有石墨烯-电介质超材料的金属波导阵列以及在具有特定石墨烯片掺杂空间分布的石墨烯-电介质超材料块中创建的平面波导阵列。对这些光束转向器的性能进行了数值分析,结果表明所提出的设计在很宽的输出角度范围内(高达约70°)具有可调谐性。所提出的基于石墨烯的可调谐光束转向可用于红外成像和传感的可调谐发射机/接收机模块。