Kolmychek I A, Novikov V B, Malysheva I V, Leontiev A P, Napolskii K S, Murzina T V
Opt Lett. 2020 Apr 1;45(7):1866-1869. doi: 10.1364/OL.384411.
The interest in hyperbolic metamaterials is fueled by fascinating optical properties exhibited by this class of artificial media. Their optical features originate from hyperbolic dispersion emerging due to the shape anisotropy of the metal-dielectric composite. In this work, we study experimentally and numerically the second-harmonic generation (SHG) in ordered arrays of Au nanorods embedded in porous aluminum oxide. Strong increase of the SHG intensity in the vicinity of the epsilon-near-zero (ENZ) spectral point accompanied by dramatic phase modulation of the SHG wave is revealed. These effects are attributed to resonant enhancement of the electric field of the light wave and transition from the elliptical to hyperbolic dispersion law in hyperbolic metamaterials near the ENZ point.
这类人工介质所展现出的迷人光学特性激发了人们对双曲线超材料的兴趣。它们的光学特性源于金属 - 电介质复合材料的形状各向异性所产生的双曲线色散。在这项工作中,我们通过实验和数值模拟研究了嵌入多孔氧化铝中的金纳米棒有序阵列中的二次谐波产生(SHG)。结果表明,在ε近零(ENZ)光谱点附近,SHG强度显著增加,同时SHG波发生剧烈的相位调制。这些效应归因于光波电场的共振增强以及在ENZ点附近双曲线超材料中从椭圆色散定律到双曲线色散定律的转变。