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Optical field enhancement in nanoscale slot waveguides of hyperbolic metamaterials

机译:双曲线超材料的纳米级缝隙波导中的光场增强

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摘要

Nanoscale slot waveguides of hyperbolic metamaterials are proposed and demonstrated for achieving large optical field enhancement. The dependence of the enhanced electric field within the air slot on waveguide mode coupling and permittivity tensors of hyperbolic metamaterials is analyzed both numerically and analytically. Optical intensity in the metamaterial slot waveguide can be more than 25 times stronger than that in a conventional silicon slot waveguide, due to tight optical mode confinement enabled by the ultrahigh refractive indices supported in hyperbolic metamaterials. The electric field enhancement effects are also verified with the realistic metal-dielectric multilayer waveguide structure.
机译:提出并证明了双曲线超材料的纳米级缝隙波导用于实现大的光场增强。从数值和分析上分析了气隙内增强电场对双曲超材料的波导模式耦合和介电常数张量的依赖性。由于双曲线超材料所支持的超高折射率所导致的严格的光学模式限制,超材料缝隙波导中的光强度可以比常规硅缝隙波导中的光强度高25倍以上。电场增强效果也用实际的金属-电介质多层波导结构进行了验证。

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