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Metal-dielectric metamaterials for guided wave optics applications

机译:导波光学应用的金属介电超材料

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We address the experimental validation of the technological feasibility and operation of the metamaterials in a guided wave configuration in the spectral domain around 1.5μm. For our experiments we considered a 2D array of 200x50x50nm gold cut wires placed on the top of a 10μm wide and 200nm thick silicon waveguide. The transmission spectral measurements performed in the spectral range between 1.25 and 1.64μm using an end-fire coupling setup, revealed a marked dip for TE polarized light, corresponding to the cut wires resonance frequency obtained by numerical modeling. No such a dip in transmission was observed for TM polarized light, i.e. when the electric filed is perpendicular to the layers interface and the orientation of the cut wires. The scanning near field optical microscopy experiments (SNOM), performed in the same spectral range, revealed for TE polarized light a strong enhancement of the electric field confined in the region between the ends of the adjacent cut wires. These results confirm the efficient excitation of the cut wires resonance in a guided wave configuration for the TE polarization. The ability for local engineering of the field interaction with the metamaterial layer and thus the control in such a way of the light flow in a guiding slab, paves the way to a novel class of photonic devices.
机译:我们解决了在1.5μm左右的光谱域中导波配置中超材料的技术可行性和操作的实验验证。对于我们的实验,我们考虑了一个200x50x50nm的金切线的二维阵列,该阵列放置在一个10μm宽,200nm厚的硅波导的顶部。使用端射耦合装置在1.25至1.64μm的光谱范围内进行的透射光谱测量显示,TE偏振光有明显的下降,对应于通过数值建模获得的割线谐振频率。对于TM偏振光,即当电场垂直于层界面和切割线的取向时,没有观察到这种透射率下降。在相同光谱范围内执行的扫描近场光学显微镜实验(SNOM)显示,对于TE偏振光,电场的强烈增强被限制在相邻切线末端之间的区域内。这些结果证实了在用于TE极化的导波配置中切割线谐振的有效激发。用于与超材料层的场相互作用的局部工程设计的能力,并因此以这种方式控制在导引板中的光流,为新型的光子器件铺平了道路。

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